Emulate, Inc.

United States of America

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        World 54
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Date
2026 (YTD) 4
2025 2
2024 14
2023 12
2022 14
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IPC Class
C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means 86
B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers 73
C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues 61
C12M 1/00 - Apparatus for enzymology or microbiology 54
G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing 50
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NICE Class
09 - Scientific and electric apparatus and instruments 24
10 - Medical apparatus and instruments 10
42 - Scientific, technological and industrial services, research and design 6
38 - Telecommunications services 5
01 - Chemical and biological materials for industrial, scientific and agricultural use 4
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Status
Pending 36
Registered / In Force 154
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1.

POD A1

      
Serial Number 99652748
Status Pending
Filing Date 2026-02-13
Owner EMULATE, INC. (USA)
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

Cell culture apparatus for laboratory use, namely, a cell culture instrument using tissue cultures in a microfluidic device with an accessible cell culture chamber.

2.

POD S1

      
Serial Number 99652880
Status Pending
Filing Date 2026-02-13
Owner EMULATE, INC. (USA)
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

Cell culture apparatus for laboratory use, namely, a cell culture instrument using tissue cultures in a stretchable microfluidic device

3.

POD R1

      
Serial Number 99652834
Status Pending
Filing Date 2026-02-13
Owner EMULATE, INC. (USA)
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

Cell culture apparatus for laboratory use, namely, a cell culture instrument using tissue cultures in a rigid microfluidic device

4.

AVA EMULATION SYSTEM

      
Application Number 1898195
Status Registered
Filing Date 2025-12-17
Registration Date 2025-12-17
Owner Emulate, Inc. (USA)
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

An instrument for scientific research providing an integrated a high throughput organ tissue cell culture device, an automated environmental control module, a digital imaging module and electronic data transmission for external storage media and display.

5.

AVA EMULATION SYSTEM

      
Serial Number 99240809
Status Pending
Filing Date 2025-06-18
Owner Emulate, Inc. (USA)
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

Scientific research instrument, namely, an integrated device for high throughput organ tissue cell cultures, featuring an automated environmental control module, a digital imaging module and electronic data transmission capabilities for transmission to external storage media and displays.

6.

CHIP-ARRAY ORGAN-CHIP CONSUMABLE

      
Serial Number 99240913
Status Registered
Filing Date 2025-06-18
Registration Date 2026-07-21
Owner Emulate, Inc. (USA)
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

A scientific research apparatus, namely, a device composed of a low-drug absorbing material that supports high throughput organ tissue cell cultures configured for automated sampling of media effluent data, live imaging data and fixed cell imaging data to generate multi-modal artificial-intelligence ready datasets for end-point prediction

7.

DEVICES, SYSTEMS AND METHODS FOR INHIBITING INVASION AND METASTASES OF CANCER

      
Application Number 18631480
Status Pending
Filing Date 2024-04-10
First Publication Date 2024-10-17
Owner EMULATE, Inc. (USA)
Inventor
  • Hamilton, Geraldine A.
  • Wen, Norman
  • Karalis, Catherine
  • Varone, Antonio
  • Levner, Daniel
  • Barrile, Riccardo

Abstract

The invention generally relates to a microfluidic platforms or “chips” for testing and understanding cancer, and, more specifically, for understanding the factors that contribute to cancer invading tissues and causing metastases. Tumor cells are grown on microfluidic devices with other non-cancerous tissues under conditions that simulate tumor invasion. The interaction with immune cells can be tested to inhibit this activity by linking a cancer chip to a lymph chip.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12N 5/09 - Tumour cells
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing

8.

HOST-BIOME INTERACTIONS

      
Application Number 18591819
Status Pending
Filing Date 2024-02-29
First Publication Date 2024-09-19
Owner Emulate, Inc. (USA)
Inventor
  • Kerns, S. Jordan
  • Karalis, Catherine
  • Nawroth, Janna
  • Villenave, Remi
  • Obrigewitch, Jenifer
  • Roth, Doris
  • Salmon, Michael
  • Apostolou, Athanasia
  • Conegliano, David

Abstract

The present invention relates to a combination of microbes, cell culture systems and microfluidic fluidic systems for use in providing a human Intestine On-Chip with optimal intestinal motility. More specifically, in some embodiments, a microfluidic chip containing intestinal epithelial cells co-cultured with intestinal endothelial cells in the presence of bacteria, such as probiotic bacteria, may find use in providing an Intestine-On-Chip for testing intestinal motility function. In some embodiments, an Intestine On-Chip may be used for identifying (testing) therapeutic compounds continuing probiotic microbes or compounds for inducing intestinal motility for use in treating gastrointestinal disorders or diseases related to intestinal function.

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12N 1/20 - BacteriaCulture media therefor
  • C12Q 1/04 - Determining presence or kind of microorganismUse of selective media for testing antibiotics or bacteriocidesCompositions containing a chemical indicator therefor

9.

ORGANS-ON-CHIPS AS A PLATFORM FOR EPIGENETICS DISCOVERY

      
Application Number 18659536
Status Pending
Filing Date 2024-05-09
First Publication Date 2024-09-12
Owner EMULATE, INC. (USA)
Inventor
  • Karalis, Catherine
  • Kujala, Ville

Abstract

The present invention relates to microfluidic fluidic devices, methods and systems for use in identifying epigenetic signatures in a range of sample types, e.g., cells established on a “chip” (including but not limited to single cell samples, cell populations, cell layers and whole tissues, such as a biopsy), immune cells, cfDNA, exosomes, and the like. More specifically, in some embodiments, a microfluidic chip containing a sample is contacted with a test compound (e.g. DNA altering test compound, an RNA expression altering test compound, etc.) for use in providing a diagnostic epigenetic signature for that type of sample (or cell type) exposed to that specific test compound. In some embodiments, after contact with a test compound, effluent fluids (e.g. fluids exiting the “chip” that contacted the cells) are derived for testing as a “virtual blood draw.” In some embodiments, epigenetic signatures include (but are not limited to) identifying specific combinations of modifications of chromosomes and specific modifications of DNA.

IPC Classes  ?

  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12Q 1/6809 - Methods for determination or identification of nucleic acids involving differential detection
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing

10.

PHYSIOLOGY AND PATHOPHYSIOLOGY OF HUMAN GUT: INTESTINE-ON-CHIP

      
Application Number 18602727
Status Pending
Filing Date 2024-03-12
First Publication Date 2024-09-12
Owner EMULATE, Inc. (USA)
Inventor
  • Apostolou, Athanasia
  • Varone, Antonio
  • Kasendra, Magdalena
  • Luc, Raymond

Abstract

An in vitro microfluidic intestine on-chip is described herein that mimics the structure and at least one function of specific areas of the gastrointestinal system in vivo. In particular, a multicellular, layered, microfluidic intestinal cell culture, which is some embodiments is derived from patient's enteroids-derived cells, is described comprising L cells, allowing for interactions between L cells and gastrointestinal epithelial cells, endothelial cells and immune cells. This in vitro microfluidic system can be used for modeling inflammatory gastrointestinal autoimmune tissue, e.g., diabetes, obesity, intestinal insufficiency and other inflammatory gastrointestinal disorders. These multicellular-layered microfluidic intestine on-chips further allow for comparisons between types of gastrointestinal tissues, e.g., small intestinal duodenum, small intestinal jejunum, small intestinal ileum, large intestinal colon, etc., and between disease states of gastrointestinal tissue, i.e. healthy, pre-disease and diseased areas. Additionally, these microfluidic gut-on-chips allow identification of cells and cellular derived factors driving disease states and drug testing for reducing inflammation.

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • G01N 1/30 - StainingImpregnating
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing

11.

Systems and methods for growth of intestinal cells in microfluidic devices

      
Application Number 18626855
Grant Number 12378528
Status In Force
Filing Date 2024-04-04
First Publication Date 2024-08-01
Grant Date 2025-08-05
Owner
  • EMULATE, INC. (USA)
  • CEDARS-SINAI MEDICAL CENTER (USA)
Inventor
  • Kerns, S. Jordan
  • Wen, Norman
  • Lucchesi, Carol
  • Hinojosa, Christopher David
  • Fraser, Jacob
  • Puerta, Jefferson
  • Hamilton, Geraldine
  • Barrett, Robert
  • Svendsen, Clive
  • Levner, Daniel
  • Targan, Stephen R.
  • Workman, Michael
  • Sareen, Dhruv
  • Rajamani, Uthra
  • Kasendra, Magdalena

Abstract

Organs-on-chips are microfluidic devices for culturing living cells in micrometer sized chambers in order to model physiological functions of tissues and organs. Engineered patterning and continuous fluid flow in these devices has allowed culturing of intestinal cells bearing physiologically relevant features and sustained exposure to bacteria while maintaining cellular viability, thereby allowing study of inflammatory bowl diseases. However, existing intestinal cells do not possess all physiologically relevant subtypes, do not possess the repertoire of genetic variations, or allow for study of other important cellular actors such as immune cells. Use of iPSC-derived epithelium, including IBD patient-specific cells, allows for superior disease modeling by capturing the multi-faceted nature of the disease.

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C12M 3/00 - Tissue, human, animal or plant cell, or virus culture apparatus
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12N 5/074 - Adult stem cells
  • C12N 5/079 - Neural cells
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing

12.

Microfluidic model of the blood brain barrier

      
Application Number 18529198
Grant Number 12378519
Status In Force
Filing Date 2023-12-05
First Publication Date 2024-07-11
Grant Date 2025-08-05
Owner
  • EMULATE, INC. (USA)
  • CEDARS-SINAI MEDICAL CENTER (USA)
Inventor
  • Kerns, S. Jordan
  • Wen, Norman
  • Lucchesi, Carolina
  • Hinojosa, Christopher David
  • Fraser, Jacob
  • Hamilton, Geraldine
  • Vatine, Gad
  • Sances, Samuel
  • Svendsen, Clive
  • Levner, Daniel
  • Sareen, Dhruv

Abstract

The invention relates to culturing brain endothelial cells, and optionally astrocytes and neurons in a fluidic device under conditions whereby the cells mimic the structure and function of the blood brain barrier. Culture of such cells in a microfluidic device, whether alone or in combination with other cells, drives maturation and/or differentiation further than existing systems.

IPC Classes  ?

  • C12N 5/0793 - Neurons
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C12N 5/079 - Neural cells
  • C12Q 1/02 - Measuring or testing processes involving enzymes, nucleic acids or microorganismsCompositions thereforProcesses of preparing such compositions involving viable microorganisms
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means

13.

Global MPS Day

      
Application Number 1797716
Status Registered
Filing Date 2023-12-14
Registration Date 2023-12-14
Owner Emulate, Inc. (USA)
NICE Classes  ?
  • 35 - Advertising and business services
  • 41 - Education, entertainment, sporting and cultural services

Goods & Services

Advertising, marketing and promoting scientific research meetings, namely trade fairs and exhibitions related to the field of microphysiological systems. Organizing, arranging and conducting educational exhibitions, conferences, congresses and symposiums related to the field of microphysiological systems.

14.

MICROFLUIDIC CONTROL

      
Application Number 18591786
Status Pending
Filing Date 2024-02-29
First Publication Date 2024-06-20
Owner EMULATE, Inc. (USA)
Inventor
  • Hinojosa, Christopher David
  • Ahn, Grace

Abstract

The present invention is related to the field of fluidic devices, and in particular, microfluidic cell culture systems. The present invention provides pumping, recirculation and sampling for a microfluidic device or devices. The present invention provides solutions to the control of microfluidics for both terrestrial and space applications, including the control over the movement of fluids in zero gravity or microgravity.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 1/02 - Apparatus for enzymology or microbiology with agitation meansApparatus for enzymology or microbiology with heat exchange means
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means

15.

Effects of space travel on human brain cells

      
Application Number 17953889
Grant Number 12098356
Status In Force
Filing Date 2022-09-27
First Publication Date 2024-04-18
Grant Date 2024-09-24
Owner EMULATE, INC. (USA)
Inventor
  • Hinojosa, Christopher David
  • Sliz, Josiah
  • Pediaditakis, Iosif
  • Barthakur, Sonalee

Abstract

The invention generally relates to a microfluidic platforms or “chips” for testing and conducting experiments on the International Space Station (ISS). More specifically, microfluidic Brain-On-Chip, comprising neuronal and vascular endothelial cells, will be analyzed in both healthy and inflamed states to assess how the circumstances of space travel affect the human brain.

IPC Classes  ?

  • C12M 1/00 - Apparatus for enzymology or microbiology
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/26 - Inoculator or sampler
  • G01N 1/18 - Devices for withdrawing samples in the liquid or fluent state with provision for splitting samples into portions

16.

CONTROLLING PRESSURE

      
Application Number 18520821
Status Pending
Filing Date 2023-11-28
First Publication Date 2024-03-21
Owner EMULATE, Inc. (USA)
Inventor
  • Levner, Daniel
  • Sliz, Josiah Daniel
  • Hinojosa, Christopher Davidd
  • Gomes, Joshua
  • Fernandez-Alcon, Jose

Abstract

A culture module is contemplated that allows the perfusion and optionally mechanical actuation of one or more microfluidic devices, such as organ-on-a-chip microfluidic devices comprising cells that mimic at least one function of an organ in the body. A method for pressure control is contemplated to allow the control of flow rate (while perfusing cells) despite limitations of common pressure regulators. The method for pressure control allows for perfusion of a microfluidic device, such as an organ on a chip microfluidic device comprising cells that mimic cells in an organ in the body, that is detachably linked with said assembly, so that fluid enters ports of the microfluidic device from a fluid reservoir, optionally without tubing, at a controllable flow rate.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • A01N 1/02 - Preservation of living parts
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • B01L 9/00 - Supporting devicesHolding devices
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 1/34 - Measuring or testing with condition measuring or sensing means, e.g. colony counters
  • C12M 1/36 - Apparatus for enzymology or microbiology including condition or time responsive control, e.g. automatically controlled fermentors
  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • C12M 3/00 - Tissue, human, animal or plant cell, or virus culture apparatus
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues

17.

RHEOLOGICALLY BIOMIMETIC FLUID SURROGATE

      
Application Number 18243242
Status Pending
Filing Date 2023-09-07
First Publication Date 2024-03-07
Owner EMULATE, INC. (USA)
Inventor
  • Varone, Antonio
  • Kasendra, Magdalena
  • Lucchesi, Carolina
  • Kerns, S. Jordan
  • Barrile, Riccardo
  • Barthakur, Sonalee

Abstract

The present invention contemplates compositions, devices and methods of simulating biological fluids in a fluidic device, including but not limited to a microfluidic chip. In one embodiment, fluid comprising a colloid under flow in a microfluidic chip has a fluid density or viscosity similar to a bodily fluid, e.g. blood, lymph, lung fluid, or the like. In one embodiment, a fluid is provided as a rheologically biomimetic blood surrogate or substitute for simulating physiological shear stress and cell dynamics in fluidic device, including but not limited to immune cells.

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • G01N 1/30 - StainingImpregnating
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing

18.

MOXI

      
Application Number 1774981
Status Registered
Filing Date 2023-12-22
Registration Date 2023-12-22
Owner EMULATE, INC. (USA)
NICE Classes  ?
  • 38 - Telecommunications services
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Providing on-line electronic bulletin boards for transmission of messages among computer users concerning scientific research. Computer services, namely, creating an on-line community for registered users to participate in discussions, get feedback from their peers, form virtual communities, and engage in professional collaborations in the field of scientific research.

19.

MICROFLUIDIC PROXIMIAL TUBULE KIDNEY-ON-CHIP

      
Application Number 18474875
Status Pending
Filing Date 2023-09-26
First Publication Date 2024-02-01
Owner EMULATE, INC. (USA)
Inventor
  • Jang, Kyung-Jin
  • Ronxhi, Jamey
  • Sliz, Josiah
  • Jeanty, Sauveur
  • Jadalannagari, Sushma
  • Nookala, Ananth
  • Park, Hyoungshin

Abstract

The present invention relates to microfluidic fluidic devices, methods and systems as microfluidic kidney on-chips, e.g. human Proximal Tubule-Kidney-Chip, Glomerulus (Kidney)-Chip, Collecting Duct (Kidney)-Chip. Devices, methods and systems are described for drug testing including drug transport and renal clearance. Further, such devices, methods and systems are used for determining drug-drug interactions and their effect upon renal transporter functions. Importantly, they may be used for pre-clinical and clinical drug development for treating kidney diseases and for personalized medicine.

IPC Classes  ?

  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues

20.

VITRO EPITHELIAL MODELS COMPRISING LAMINA PROPRIA-DERIVED CELLS

      
Application Number 18374319
Status Pending
Filing Date 2023-09-28
First Publication Date 2024-01-25
Owner EMULATE, Inc. (USA)
Inventor
  • Kerns, S. Jordan
  • Barrile, Riccardo
  • Hamilton, Geraldine
  • Karalis, Catherine
  • Levner, Daniel
  • Lucchesi, Carolina
  • Varone, Antonio
  • Villenave, Remi

Abstract

An in vitro microfluidic “organ-on-chip” is described herein that mimics the structure and at least one function of specific areas of the epithelial system in vivo. In particular, a multicellular, layered, microfluidic culture is described, allowing for interactions between lamina propria-derived cells and the associated tissue specific epithelial cells and endothelial cells. This in vitro microfluidic system can be used for modeling inflammatory tissue, e.g., autoimmune disorders involving epithelia and diseases involving epithelial layers. These multicellular, layered microfluidic “organ-on-chip”, e.g. “epithelia-on-chip” further allow for comparisons between types of epithelia tissues, e.g., lung (Lung-On-Chip), bronchial (Airway-On-Chip), skin (Skin-On-Chip), cervix (Cervix-On-Chip), blood brain barrier (BBB-On-Chip), etc., in additional to neurovascular tissue, (Brain-On-Chip), and between different disease states of tissue, i.e. healthy, pre-disease and diseased areas. Additionally, these microfluidic “organ-on-chips” allow identification of cells and cellular derived factors driving disease states in addition to drug testing for reducing inflammation effecting epithelial regions.

IPC Classes  ?

  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing

21.

CHIP-A1

      
Serial Number 98332486
Status Registered
Filing Date 2023-12-27
Registration Date 2025-06-03
Owner EMULATE INC. ()
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

Cell culture apparatus for laboratory use, namely, a microfluidic chip with an accessible cell culture chamber.

22.

MOXI

      
Application Number 230952400
Status Registered
Filing Date 2023-12-22
Registration Date 2025-08-22
Owner EMULATE, INC. (USA)
NICE Classes  ?
  • 38 - Telecommunications services
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

(1) Providing on-line electronic bulletin boards for transmission of messages among computer users concerning scientific research. (2) Computer services, namely, creating an on-line community for registered users to participate in discussions, get feedback from their peers, form virtual communities, and engage in professional collaborations in the field of scientific research.

23.

GLOBAL MPS DAY

      
Application Number 233623800
Status Registered
Filing Date 2023-12-14
Registration Date 2025-11-21
Owner Emulate, Inc. (USA)
NICE Classes  ?
  • 35 - Advertising and business services
  • 41 - Education, entertainment, sporting and cultural services

Goods & Services

(1) Advertising, marketing and promoting scientific research meetings, namely trade fairs and exhibitions related to the field of microphysiological systems. (2) Organizing, arranging and conducting educational exhibitions, conferences, congresses and symposiums related to the field of microphysiological systems.

24.

GLOBAL MPS DAY

      
Serial Number 98312765
Status Registered
Filing Date 2023-12-13
Registration Date 2025-12-30
Owner EMULATE INC. ()
NICE Classes  ?
  • 35 - Advertising and business services
  • 41 - Education, entertainment, sporting and cultural services

Goods & Services

Organization of trade fairs in the field of microphysiological systems Providing educational services, namely, organizing scientific research symposiums, conferences, congresses, and exhibitions related to the field of microphysiological systems

25.

COMPOSITIONS AND METHODS OF CELL ATTACHMENT

      
Application Number 18214651
Status Pending
Filing Date 2023-06-27
First Publication Date 2023-10-26
Owner EMULATE, Inc. (USA)
Inventor
  • Levner, Daniel
  • Jang, Kyung Jin
  • Fraser, Jacob
  • Kerns, S. Jordan
  • Varone, Antonio
  • Huh, Dongeun

Abstract

Compositions, devices and methods are described for improving adhesion, attachment, and/or differentiation of cells in a microfluidic device or chip. In one embodiment, one or more ECM proteins are covalently coupled to the surface of a microchannel of a microfluidic device. The microfluidic devices can be stored or used immediately for culture and/or support of living cells such as mammalian cells, and/or for simulating a function of a tissue, e.g., a liver tissue, muscle tissue, etc. Extended adhesion and viability with sustained function over time is observed.

IPC Classes  ?

  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12N 5/077 - Mesenchymal cells, e.g. bone cells, cartilage cells, marrow stromal cells, fat cells or muscle cells
  • C12N 5/00 - Undifferentiated human, animal or plant cells, e.g. cell linesTissuesCultivation or maintenance thereofCulture media therefor
  • C07K 2/00 - Peptides of undefined number of amino acidsDerivatives thereof
  • C07K 14/78 - Connective tissue peptides, e.g. collagen, elastin, laminin, fibronectin, vitronectin or cold insoluble globulin [CIG]
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/00 - Apparatus for enzymology or microbiology

26.

ADVANCED PULMONARY MODELS

      
Application Number 18083916
Status Pending
Filing Date 2022-12-19
First Publication Date 2023-09-14
Owner EMULATE, INC. (USA)
Inventor
  • Villenave, Remi
  • Lucchesi, Carolina
  • Nguyen, Justin
  • Karalis, Catherine
  • Hamilton, Geraldine
  • Baddal, Buket
  • Salmon, Michael

Abstract

The present invention relates to microfluidic fluidic systems and methods for the in vitro modeling diseases of the lung and small airway. In one embodiment, the invention relates to a system for testing responses of a microfluidic Small Airway-on-Chip infected with one or more infectious agents (e.g. respiratory viruses) as a model of respiratory disease exacerbation (e.g. asthma exacerbation). In one embodiment, this disease model on a microfluidic chip allows for a) the testing of anti-inflammatory and/or anti-viral compounds introduced into the system, as well as b) the monitoring of the participation, recruitment and/or movement of immune cells, including the transmigration of cells. In particular, this system provides, in one embodiment, an in-vitro platform for modeling severe asthma as “Severe Asthma-on-Chip.” In some embodiments, this invention provides a model of viral-induced asthma in humans for use in identifying potentially effective treatments.

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12N 1/20 - BacteriaCulture media therefor

27.

Open-top microfluidic device with structural anchors

      
Application Number 18097755
Grant Number 11859165
Status In Force
Filing Date 2023-01-17
First Publication Date 2023-09-14
Grant Date 2024-01-02
Owner EMULATE, INC. (USA)
Inventor
  • Levner, Daniel
  • Hinojosa, Christopher David
  • Wen, Norman
  • Varone, Antonio
  • Nguyen, Justin
  • Williamson, Lina
  • Kerns, S. Jordan
  • Karalis, Catherine
  • Hamilton, Geraldine
  • Lucchesi, Carol

Abstract

A microfluidic device is contemplated comprising an open-top cavity with structural anchors on the vertical wall surfaces that serve to prevent gel shrinkage-induced delamination, a porous membrane (optionally stretchable) positioned in the middle over a microfluidic channel(s). The device is particularly suited to the growth of cells mimicking dermal layers.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • G01N 33/543 - ImmunoassayBiospecific binding assayMaterials therefor with an insoluble carrier for immobilising immunochemicals
  • C12N 5/0793 - Neurons
  • C12N 5/079 - Neural cells
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C12N 5/077 - Mesenchymal cells, e.g. bone cells, cartilage cells, marrow stromal cells, fat cells or muscle cells

28.

DEVICES AND METHODS FOR SIMULATING A FUNCTION OF LIVER TISSUE

      
Application Number 17992168
Status Pending
Filing Date 2022-11-22
First Publication Date 2023-05-25
Owner EMULATE, INC. (USA)
Inventor
  • Hamilton, Geraldine
  • Jang, Kyung Jin
  • Haney, Suzzette
  • Ronxhi, Janey
  • Kodella, Konstantia
  • Park, Hyoungshin
  • Sliz, Josiah
  • Petropolis, Debora Barreiros
  • Levner, Daniel
  • Otieno, Monicah

Abstract

Provided herein relates to devices for simulating a function of a tissue and methods of using the same. In some embodiments, the devices can be used to simulate a function of a human liver tissue. In some embodiments, the devices can be used to simulate a function of a dog liver tissue. Endothelial cell culture media for long-term culture of endothelial cells are also described herein.

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • A61K 35/407 - LiverHepatocytes
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 3/00 - Tissue, human, animal or plant cell, or virus culture apparatus

29.

Physiology and pathophysiology of human gut: intestine-on-chip

      
Application Number 17984023
Grant Number 12018284
Status In Force
Filing Date 2022-11-09
First Publication Date 2023-05-18
Grant Date 2024-06-25
Owner EMULATE, INC. (USA)
Inventor
  • Apostolou, Athanasia
  • Varone, Antonio
  • Kasendra, Magdalena
  • Luc, Raymond

Abstract

An in vitro microfluidic intestine on-chip is described herein that mimics the structure and at least one function of specific areas of the gastrointestinal system in vivo. In particular, a multicellular, layered, microfluidic intestinal cell culture, which is some embodiments is derived from patient's enteroids-derived cells, is described comprising L cells, allowing for interactions between L cells and gastrointestinal epithelial cells, endothelial cells and immune cells. This in vitro microfluidic system can be used for modeling inflammatory gastrointestinal autoimmune tissue, e.g., diabetes, obesity, intestinal insufficiency and other inflammatory gastrointestinal disorders. These multicellular-layered microfluidic intestine on-chips further allow for comparisons between types of gastrointestinal tissues, e.g., small intestinal duodenum, small intestinal jejunum, small intestinal ileum, large intestinal colon, etc., and between disease states of gastrointestinal tissue, i.e. healthy, pre-disease and diseased areas. Additionally, these microfluidic gut-on-chips allow identification of cells and cellular derived factors driving disease states and drug testing for reducing inflammation.

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • G01N 1/30 - StainingImpregnating
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing

30.

Moxi Social Network

      
Application Number 1726401
Status Registered
Filing Date 2022-12-15
Registration Date 2022-12-15
Owner EMULATE, INC. (USA)
NICE Classes  ?
  • 38 - Telecommunications services
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Providing on-line electronic bulletin boards for transmission of messages among computer users concerning the field of scientific research. Providing an on-line searchable database in the field of scientific information for scientific research purposes (term considered too vague by the International Bureau - Rule 13 (2) (b) of the Regulations).

31.

Controlling pressure

      
Application Number 17950422
Grant Number 11834641
Status In Force
Filing Date 2022-09-22
First Publication Date 2023-01-26
Grant Date 2023-12-05
Owner EMULATE, INC. (USA)
Inventor
  • Levner, Daniel
  • Sliz, Josiah Daniel
  • Hinojosa, Christopher David
  • Gomes, Joshua
  • Fernandez-Alcon, Jose

Abstract

A culture module is contemplated that allows the perfusion and optionally mechanical actuation of one or more microfluidic devices, such as organ-on-a-chip microfluidic devices comprising cells that mimic at least one function of an organ in the body. A method for pressure control is contemplated to allow the control of flow rate (while perfusing cells) despite limitations of common pressure regulators. The method for pressure control allows for perfusion of a microfluidic device, such as an organ on a chip microfluidic device comprising cells that mimic cells in an organ in the body, that is detachably linked with said assembly, so that fluid enters ports of the microfluidic device from a fluid reservoir, optionally without tubing, at a controllable flow rate.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • C12M 1/34 - Measuring or testing with condition measuring or sensing means, e.g. colony counters
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • A01N 1/02 - Preservation of living parts
  • C12M 3/00 - Tissue, human, animal or plant cell, or virus culture apparatus
  • C12M 1/36 - Apparatus for enzymology or microbiology including condition or time responsive control, e.g. automatically controlled fermentors
  • B01L 9/00 - Supporting devicesHolding devices

32.

Moxi by Emulate

      
Application Number 1708693
Status Registered
Filing Date 2022-12-14
Registration Date 2022-12-14
Owner EMULATE, INC. (USA)
NICE Classes  ?
  • 38 - Telecommunications services
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Providing on-line electronic bulletin boards for transmission of messages among computer users concerning scientific research. Computer services, namely, creating an on-line community for registered users to share scientific research.

33.

Pressure manifold and culture module

      
Application Number 16730448
Grant Number 11820966
Status In Force
Filing Date 2019-12-30
First Publication Date 2022-12-22
Grant Date 2023-11-21
Owner EMULATE, INC. (USA)
Inventor
  • Hinojosa, Christopher David
  • Thompson, Ii, Guy Robert
  • Gomes, Joshua
  • Freake, Jacob
  • Sabin, Doug

Abstract

A perfusion manifold assembly is described that allows for perfusion of a microfluidic device, such as an organ on a chip microfluidic device comprising cells that mimic cells in an organ in the body, that is detachably linked with said assembly so that fluid enters ports of the microfluidic device from a fluid reservoir, optionally without tubing, at a controllable flow rate. A culture module is contemplated that allows the perfusion and optionally mechanical actuation of one or more microfluidic devices, such as organ-on-a-chip microfluidic devices comprising cells that mimic at least one function of an organ in the body.

IPC Classes  ?

  • A01N 1/00 - Preservation of bodies of humans or animals, or parts thereof
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • C12M 1/34 - Measuring or testing with condition measuring or sensing means, e.g. colony counters
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • A01N 1/02 - Preservation of living parts
  • C12M 3/00 - Tissue, human, animal or plant cell, or virus culture apparatus
  • C12M 1/36 - Apparatus for enzymology or microbiology including condition or time responsive control, e.g. automatically controlled fermentors
  • B01L 9/00 - Supporting devicesHolding devices

34.

BRAIN-CHIP MODELING NEURODEGENERATION AND NEUROINFLAMMATION IN PARKINSON'S DISEASE

      
Application Number 17719627
Status Pending
Filing Date 2022-04-13
First Publication Date 2022-10-27
Owner EMULATE, INC. (USA)
Inventor
  • Pediaditakis, Iosif
  • Tien-Street, William R.
  • Kerns, S. Jordan
  • Hamilton, Geraldine
  • Levner, Daniel

Abstract

The invention relates to modeling brain neuronal disease in a microfluidic device, comprising a co-culture of iPS-derived brain endothelial cells; iPS-derived dopaminergic neurons; primary microglia; and primary astrocytes, a Blood-Brain-Barrier (BBB)-Chip and a Brain-Chip. In particular, cross-talk between glial cells (e.g. microglia and astrocytes) with neuronal cells, in further contact with endothelial cells is contemplated for use for identifying drug targets under conditions for inducing in vivo relevant neuronal inflammation, neurodegeneration and neuronal death. Thus, in one embodiment, a microfluidic Brain-Chip comprising a co-culture of brain cells is exposed to α-synuclein preformed fibrils (PFF), a type of pathogenic form of α-synuclein. Such α-synuclein PFF exposure demonstrates an in vivo relevant disease pathogenesis on a microfluidic device as a concentration- and time-controlled manner that may be used for preclinical drug evaluation for diseases related to neuronal inflammation, e.g. Parkinson's disease (PD). In some embodiments, modulation of complement in the presence of neuronal inflammation is contemplated. In some embodiments, drug delivery to brain cells across the BBB is contemplated for preclinical testing of drug efficacy for slowing or stopping neuronal inflammation and degeneration.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12N 5/079 - Neural cells
  • C12N 5/00 - Undifferentiated human, animal or plant cells, e.g. cell linesTissuesCultivation or maintenance thereofCulture media therefor
  • C07K 14/47 - Peptides having more than 20 amino acidsGastrinsSomatostatinsMelanotropinsDerivatives thereof from animalsPeptides having more than 20 amino acidsGastrinsSomatostatinsMelanotropinsDerivatives thereof from humans from vertebrates from mammals
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing

35.

Systems and methods for growth of intestinal cells in microfluidic devices

      
Application Number 17678485
Grant Number 11952592
Status In Force
Filing Date 2022-02-23
First Publication Date 2022-09-08
Grant Date 2024-04-09
Owner EMULATE, INC. (USA)
Inventor
  • Kerns, S. Jordan
  • Wen, Norman
  • Lucchesi, Carol
  • Hinojosa, Christopher David
  • Fraser, Jacob
  • Puerta, Jefferson
  • Hamilton, Geraldine
  • Barrett, Robert
  • Svendsen, Clive
  • Levner, Daniel
  • Targan, Stephen R
  • Workman, Michael
  • Sareen, Dhruv
  • Rajamani, Uthra
  • Kasendra, Magdalena

Abstract

Organs-on-chips are microfluidic devices for culturing living cells in micrometer sized chambers in order to model physiological functions of tissues and organs. Engineered patterning and continuous fluid flow in these devices has allowed culturing of intestinal cells bearing physiologically relevant features and sustained exposure to bacteria while maintaining cellular viability, thereby allowing study of inflammatory bowl diseases. However, existing intestinal cells do not possess all physiologically relevant subtypes, do not possess the repertoire of genetic variations, or allow for study of other important cellular actors such as immune cells. Use of iPSC-derived epithelium, including IBD patient-specific cells, allows for superior disease modeling by capturing the multi-faceted nature of the disease.

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C12M 3/00 - Tissue, human, animal or plant cell, or virus culture apparatus
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12N 5/074 - Adult stem cells
  • C12N 5/079 - Neural cells
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing

36.

ANTIBODY PRODUCING MICROFLUIDIC DEVICES

      
Application Number 17746097
Status Pending
Filing Date 2022-05-17
First Publication Date 2022-09-08
Owner EMULATE, INC. (USA)
Inventor
  • Stark, Alicia
  • Gurpreet, Brar

Abstract

The present invention relates to fluidic systems for producing IgG antibodies from co-cultures of white blood cells. In some embodiments, a microfluidic device containing co-cultures of an autologous whole peripheral white blood cell population including B cells, are used for providing antigen specific IgG antibody production from differentiating B cells (plasma cells). More specifically, high levels of IgM and IgG classes of antibodies are harvested from fluids flowing through the device. In some embodiments, IgG is produced during activation in the presence of antigen, including but not limited to therapeutic immunogenic compounds, e.g. engineered antibodies, vaccines, etc. In some embodiments, such co-cultures are further exposed to drug compounds e.g. for preclinical safety testing and individualized personal drug responses. In some embodiments, such antibody producing microfluidic devices are contemplated for use in companion diagnostic and complementary assays.

IPC Classes  ?

  • C12N 5/0781 - B cellsProgenitors thereof
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C07K 16/00 - Immunoglobulins, e.g. monoclonal or polyclonal antibodies

37.

DEVICES, SYSTEMS AND METHODS FOR INHIBITING INVASION AND METASTASES OF CANCER

      
Application Number 17725034
Status Pending
Filing Date 2022-04-20
First Publication Date 2022-09-08
Owner EMULATE, INC. (USA)
Inventor
  • Hamilton, Geraldine A.
  • Wen, Norman
  • Karalis, Catherine
  • Varone, Antonio
  • Levner, Daniel
  • Barrile, Riccardo

Abstract

The invention generally relates to a microfluidic platforms or “chips” for testing and understanding cancer, and, more specifically, for understanding the factors that contribute to cancer invading tissues and causing metastases. Tumor cells are grown on microfluidic devices with other non-cancerous tissues under conditions that simulate tumor invasion. The interaction with immune cells can be tested to inhibit this activity by linking a cancer chip to a lymph chip.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • C12N 5/09 - Tumour cells

38.

MOXI

      
Serial Number 97464087
Status Registered
Filing Date 2022-06-17
Registration Date 2023-12-26
Owner EMULATE, INC. ()
NICE Classes  ?
  • 38 - Telecommunications services
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Providing on-line electronic bulletin boards for transmission of messages among computer users concerning scientific research Computer services, namely, creating an on-line community for registered users to participate in discussions, get feedback from their peers, form virtual communities, and engage in professional collaborations in the field of scientific research

39.

MOXI BY EMULATE

      
Serial Number 97464203
Status Registered
Filing Date 2022-06-17
Registration Date 2024-04-09
Owner EMULATE, INC. ()
NICE Classes  ? 42 - Scientific, technological and industrial services, research and design

Goods & Services

Computer services, namely, creating an on-line community for registered users to share scientific research

40.

Compound distribution in microfluidic devices

      
Application Number 17538518
Grant Number 12298320
Status In Force
Filing Date 2021-11-30
First Publication Date 2022-05-19
Grant Date 2025-05-13
Owner EMULATE, INC. (USA)
Inventor
  • Sliz, Josiah
  • Levner, Daniel
  • Zuckerman, Brian
  • Wen, Norman
  • Rubins, Jonathan
  • Shroff, Tanvi
  • Hinojosa, Christopher David
  • Ahn, Grace
  • Antontsev, Victor
  • Puerta, Jefferson
  • Conegliano, David
  • Kerns, S. Jordan

Abstract

The present invention is related to the field of microfluidics and compound distribution within microfluidic devices and their associated systems. In one embodiment, present invention aims to solve the problem of molecule and compound absorbency into the materials making up laboratory equipment, microfluidic devices and their related infrastructure, without unduly restricting gas transport within microfluidic devices.

IPC Classes  ?

  • G01N 35/00 - Automatic analysis not limited to methods or materials provided for in any single one of groups Handling materials therefor
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12Q 3/00 - Condition-responsive control processes
  • G01N 15/06 - Investigating concentration of particle suspensions
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing

41.

COMPOSITIONS AND METHODS OF USING PARTIAL GEL LAYERS IN A MICROFLUIDIC DEVICE

      
Application Number 17514659
Status Pending
Filing Date 2021-10-29
First Publication Date 2022-04-07
Owner Emulate, Inc. (USA)
Inventor
  • Petropolis, Debora Barreiros
  • Villenave, Remi
  • Nawroth, Janna
  • Shroff, Tanvi
  • Kerns, S. Jordan
  • Varone, Antonio

Abstract

The present invention relates to the use of gels for cell cultures, including but not limited to microfluidic devices and transwell devices, for culturing cells, such as organ cells, e.g. airway cells, intestinal cells, etc., and co-culturing cells, (e.g. parenchymal cells and endothelial cells, etc). As one example, the use of gels results in improved lung cell cultures, such as when using transwells and microfluidic devices, (e.g. for culturing healthy airway epithelial cells, culturing diseased airway epithelial cells, e.g., CF epithelial cells that are ciliated). The present invention relates to fluidic devices, methods and systems for use with gel layers within a microfluidic device. In particular, a partial gel layer is disposed within a microchannel of a microfluidic device. For example, a partial gel layer has a thickness ranging between approximately 20-100 μm. A dilute partial gel layer of less than 100 μm may be formed from a polymer solution of 0.5 mg/ml. A cell-permeable partial gel layer having a thickness ranging between approximately 20-50 μm may be formed from a polymer solution of 1-3 mg/ml. A partial gel layer may be formed by a hydrodynamic shearing technique. Such thin gel layers can support a variety of cell cultures, including but not limited to single cells, cell populations, cell layers, differentiated cell layers, and/or primary tissues. The present invention is related to the field of imaging and image processing. In particular, the invention is related to imaging that supports the determination of cell membrane cilia beating frequency. For example, methods described herein encompass cilia beat frequency in the context of membrane region and/or distances between regions. Alternatively, the methods described here encompass cilia beat synchrony and correlation of beat frequency between cell membrane regions.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues

42.

MICROFLUIDIC DEVICES FOR TATTOO PIGMENT SAFETY

      
Application Number 17484255
Status Pending
Filing Date 2021-09-24
First Publication Date 2022-03-17
Owner EMULATE, INC. (USA)
Inventor
  • Leng, Lian
  • Nguyen, Justin
  • Wen, Norman
  • Varone, Antonio

Abstract

The present invention relates to devices including microfluidic devices, e.g. Skin on-Chip (Skin-Chip), for simulating a physiological response to agents and injury, including tattoo injury. In particular, a Skin-Chip is intended for use in replicating the interaction of tattoo ink with skin on a cellular level, including but not limited to mechanisms of wound healing following a tattoo gun and/or tattoo needle induced skin injury; ink particle effects such as pigment retention, pigment distribution and pigment clearance; inflammatory response to foreign particles, i.e. tattoo ink, etc. Further, effects of tattoo inks on simulated microfluidic skin is extended to determine effects of systemic ink exposure upon other organs through use of organ chips, e.g. liver-chips, kidney-chips, Lymph node-chips, etc. In some embodiments, safer ink formulations, e.g. less toxic ink particles, less toxic ink diluents, etc., are contemplated for development and use over currently available tattoo inks and diluents. Further contemplated is using a Tattooed Skin-Chip for developing rapid and non-toxic methods of removal of Tattoos in human skin.

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C12N 5/077 - Mesenchymal cells, e.g. bone cells, cartilage cells, marrow stromal cells, fat cells or muscle cells
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing

43.

IN VITRO GASTROINTESTINAL MODEL COMPRISING LAMINA PROPRIA-DERIVED CELLS

      
Application Number 17527422
Status Pending
Filing Date 2021-11-16
First Publication Date 2022-03-17
Owner EMULATE, INC. (USA)
Inventor
  • Kerns, S. Jordan
  • Obrigewitch, Jenifer
  • Salmon, Micheal
  • Umiker, Benjamin Richards

Abstract

An in vitro microfluidic gut-on-chip is described herein that mimics the structure and at least one function of specific areas of the gastrointestinal system in vivo. In particular, a multicellular, layered, microfluidic culture is described, allowing for interactions between lamina propria-derived cells and gastrointestinal epithelial cells and endothelial cells. This in vitro microfluidic system can be used for modeling inflammatory gastrointestinal tissue, e.g., Crohn's disease, colitis and other inflammatory gastrointestinal disorders. These multicellular, layered microfluidic gut-on-chip further allow for comparisons between types of gastrointestinal tissues, e.g., small intestinal deuodejeum, small intestinal ileium, large intestinal colon, etc., and between disease states of gastrointestinal tissue, i.e. healthy, pre-disease and diseased areas. Additionally, these microfluidic gut-on-chips allow identification of cells and cellular derived factors driving disease states and drug testing for reducing inflammation.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12N 5/077 - Mesenchymal cells, e.g. bone cells, cartilage cells, marrow stromal cells, fat cells or muscle cells
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C07K 16/28 - Immunoglobulins, e.g. monoclonal or polyclonal antibodies against material from animals or humans against receptors, cell surface antigens or cell surface determinants
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12N 5/0783 - T cellsNK cellsProgenitors of T or NK cells

44.

Microfluidic proximal tubule kidney-on-chip

      
Application Number 17406732
Grant Number 11841361
Status In Force
Filing Date 2021-08-19
First Publication Date 2022-02-10
Grant Date 2023-12-12
Owner EMULATE, INC. (USA)
Inventor
  • Jang, Kyung-Jin
  • Ronxhi, Janey
  • Sliz, Josiah
  • Jeanty, Sauveur
  • Jadalannagari, Sushma
  • Nookala, Ananth
  • Park, Hyoungshin

Abstract

The present invention relates to microfluidic fluidic devices, methods and systems as microfluidic kidney on-chips, e.g. human Proximal Tubule-Kidney-Chip, Glomerulus (Kidney)-Chip, Collecting Duct (Kidney)-Chip. Devices, methods and systems are described for drug testing including drug transport and renal clearance. Further, such devices, methods and systems are used for determining drug-drug interactions and their effect upon renal transporter functions. Importantly, they may be used for pre-clinical and clinical drug development for treating kidney diseases and for personalized medicine.

IPC Classes  ?

  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues

45.

OPEN-TOP MICROFLUIDIC DEVICE WITH STRUCTURAL ANCHORS

      
Application Number 17494221
Status Pending
Filing Date 2021-10-05
First Publication Date 2022-02-03
Owner EMULATE, INC. (USA)
Inventor
  • Levner, Daniel
  • Hinojosa, Christopher David
  • Wen, Norman
  • Varone, Antonio
  • Nguyen, Justin
  • Williamson, Lina
  • Kerns, S. Jordan
  • Karalis, Catherine
  • Hamilton, Geraldine
  • Lucchesi, Carol

Abstract

A microfluidic device is contemplated comprising an open-top cavity with structural anchors on the vertical wall surfaces that serve to prevent gel shrinkage-induced delamination, a porous membrane (optionally stretchable) positioned in the middle over a microfluidic channel(s). The device is particularly suited to the growth of cells mimicking dermal layers.

IPC Classes  ?

  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • G01N 33/543 - ImmunoassayBiospecific binding assayMaterials therefor with an insoluble carrier for immobilising immunochemicals
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12N 5/0793 - Neurons
  • C12N 5/079 - Neural cells
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C12N 5/077 - Mesenchymal cells, e.g. bone cells, cartilage cells, marrow stromal cells, fat cells or muscle cells

46.

Microfluidic chip with microchannels

      
Application Number 29736067
Grant Number D0941490
Status In Force
Filing Date 2020-05-27
First Publication Date 2022-01-18
Grant Date 2022-01-18
Owner EMULATE, INC. (USA)
Inventor
  • Thompson, Ii, Guy Robert
  • Wen, Norman
  • Rowe, Lewis

47.

Microfluidic chip without pressure features

      
Application Number 29735904
Grant Number D0938611
Status In Force
Filing Date 2020-05-26
First Publication Date 2021-12-14
Grant Date 2021-12-14
Owner EMULATE, INC. (USA)
Inventor
  • Thompson, Ii, Guy Robert
  • Wen, Norman
  • Rowe, Lewis

48.

HIGH-CONTENT IMAGING OF MICROFLUIDIC DEVICES

      
Application Number 17375237
Status Pending
Filing Date 2021-07-14
First Publication Date 2021-11-04
Owner EMULATE, Inc. (USA)
Inventor
  • Jang, Kyung-Jin
  • Levner, Daniel
  • Kodella, Konstantia-Roumvini
  • Rubins, Jonathan
  • Petropolis, Debora Barreiros
  • Peel, Samatha
  • Corrigan, Adam M.
  • Ehrardt, Beate
  • Pinto, Pedro
  • Williams, Dominic
  • Boeckeler, Matt
  • Foster, Alison J.
  • Hamilton, Geraldine
  • Ewart, Lorna Ewart

Abstract

The present invention is related to high-content microscopy imaging of microfluidic cell culture systems. A method of high-content microfluidic device microscopy is contemplated. along with related statistical analysis and microfluidic device adaptors.

IPC Classes  ?

  • G01N 15/14 - Optical investigation techniques, e.g. flow cytometry
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • G02B 21/00 - Microscopes

49.

HIGH-CONTENT IMAGING OF MICROFLUIDIC DEVICES

      
Application Number 17375324
Status Pending
Filing Date 2021-07-14
First Publication Date 2021-11-04
Owner EMULATE, Inc. (USA)
Inventor
  • Jang, Kyung-Jin
  • Levner, Daniel
  • Kodella, Konstantia-Roumvini
  • Rubins, Jonathan
  • Petropolis, Debora Barreiros
  • Boeckeler, Matt
  • Hamilton, Geraldine

Abstract

The present invention is related to high-content microscopy imaging of microfluidic cell culture systems. A method of high-content microfluidic device microscopy is contemplated, along with related statistical analysis and microfluidic device adaptors.

IPC Classes  ?

  • C12N 15/88 - Introduction of foreign genetic material using processes not otherwise provided for, e.g. co-transformation using microencapsulation, e.g. using liposome vesicle
  • C12N 15/86 - Viral vectors
  • C12Q 1/02 - Measuring or testing processes involving enzymes, nucleic acids or microorganismsCompositions thereforProcesses of preparing such compositions involving viable microorganisms

50.

Removing bubbles in a microfluidic device

      
Application Number 17347059
Grant Number 12397291
Status In Force
Filing Date 2021-06-14
First Publication Date 2021-10-07
Grant Date 2025-08-26
Owner EMULATE, INC. (USA)
Inventor
  • Levner, Daniel
  • Sliz, Josiah Daniel
  • Hinojosa, Christopher David
  • Gomes, Joshua
  • Jang, Kyung Jin

Abstract

Methods of removing bubbles from a microfluidic device are described where the flow is not stopped. Methods are described that combine pressure and flow to remove bubbles from a microfluidic device. Bubbles can be removed even where the device is made of a polymer that is largely gas impermeable.

IPC Classes  ?

  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12M 3/00 - Tissue, human, animal or plant cell, or virus culture apparatus
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means

51.

Perfusion module lid without ports

      
Application Number 29736057
Grant Number D0929607
Status In Force
Filing Date 2020-05-27
First Publication Date 2021-08-31
Grant Date 2021-08-31
Owner EMULATE, INC. (USA)
Inventor
  • Hinojosa, Christopher David
  • Gomes, Joshua

52.

In vitro epithelial models comprising lamina propria-derived cells

      
Application Number 17215900
Grant Number 11833512
Status In Force
Filing Date 2021-03-29
First Publication Date 2021-07-29
Grant Date 2023-12-05
Owner EMULATE, INC. (USA)
Inventor
  • Kerns, S. Jordan
  • Barrile, Riccardo
  • Hamilton, Geraldine
  • Karalis, Catherine
  • Levner, Daniel
  • Lucchesi, Carolina
  • Varone, Antonio
  • Villenave, Remi

Abstract

An in vitro microfluidic “organ-on-chip” is described herein that mimics the structure and at least one function of specific areas of the epithelial system in vivo. In particular, a multicellular, layered, microfluidic culture is described, allowing for interactions between lamina propria-derived cells and the associated tissue specific epithelial cells and endothelial cells. This in vitro microfluidic system can be used for modeling inflammatory tissue, e.g., autoimmune disorders involving epithelia and diseases involving epithelial layers. These multicellular, layered microfluidic “organ-on-chip”, e.g. “epithelia-on-chip” further allow for comparisons between types of epithelia tissues, e.g., lung (Lung-On-Chip), bronchial (Airway-On-Chip), skin (Skin-On-Chip), cervix (Cervix-On-Chip), blood brain barrier (BBB-On-Chip), etc., in additional to neurovascular tissue, (Brain-On-Chip), and between different disease states of tissue, i.e. healthy, pre-disease and diseased areas. Additionally, these microfluidic “organ-on-chips” allow identification of cells and cellular derived factors driving disease states in addition to drug testing for reducing inflammation effecting epithelial regions.

IPC Classes  ?

  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • C12N 5/00 - Undifferentiated human, animal or plant cells, e.g. cell linesTissuesCultivation or maintenance thereofCulture media therefor

53.

Open-top microfluidic device with structural anchors

      
Application Number 17160617
Grant Number 11248203
Status In Force
Filing Date 2021-01-28
First Publication Date 2021-07-15
Grant Date 2022-02-15
Owner EMULATE, INC (USA)
Inventor
  • Levner, Daniel
  • Hinojosa, Christopher David
  • Wen, Norman
  • Varone, Antonio
  • Nguyen, Justin
  • Williamson, Lina
  • Kerns, S. Jordan
  • Karalis, Catherine
  • Hamilton, Geraldine
  • Lucchesi, Carol

Abstract

A microfluidic device is contemplated comprising an open-top cavity with structural anchors on the vertical wall surfaces that serve to prevent gel shrinkage-induced delamination, a porous membrane (optionally stretchable) positioned in the middle over a microfluidic channel(s). The device is particularly suited to the growth of cells mimicking dermal layers.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • G01N 33/543 - ImmunoassayBiospecific binding assayMaterials therefor with an insoluble carrier for immobilising immunochemicals
  • C12N 5/0793 - Neurons
  • C12N 5/079 - Neural cells
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C12N 5/077 - Mesenchymal cells, e.g. bone cells, cartilage cells, marrow stromal cells, fat cells or muscle cells

54.

Controlling pressure

      
Application Number 17176873
Grant Number 11920114
Status In Force
Filing Date 2021-02-16
First Publication Date 2021-06-17
Grant Date 2024-03-05
Owner EMULATE, INC. (USA)
Inventor
  • Levner, Daniel
  • Sliz, Josiah Daniel
  • Hinojosa, Christopher David
  • Gomes, Joshua
  • Fernandez-Alcon, Jose

Abstract

A culture module is contemplated that allows the perfusion and optionally mechanical actuation of one or more microfluidic devices, such as organ-on-a-chip microfluidic devices comprising cells that mimic at least one function of an organ in the body. A method for pressure control is contemplated to allow the control of flow rate (while perfusing cells) despite limitations of common pressure regulators. The method for pressure control allows for perfusion of a microfluidic device, such as an organ on a chip microfluidic device comprising cells that mimic cells in an organ in the body, that is detachably linked with said assembly, so that fluid enters ports of the microfluidic device from a fluid reservoir, optionally without tubing, at a controllable flow rate.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • A01N 1/02 - Preservation of living parts
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • B01L 9/00 - Supporting devicesHolding devices
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 1/34 - Measuring or testing with condition measuring or sensing means, e.g. colony counters
  • C12M 1/36 - Apparatus for enzymology or microbiology including condition or time responsive control, e.g. automatically controlled fermentors
  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • C12M 3/00 - Tissue, human, animal or plant cell, or virus culture apparatus
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues

55.

ANTIBODY PRODUCING MICROFLUIDIC DEVICES

      
Application Number US2020061579
Publication Number 2021/102308
Status In Force
Filing Date 2020-11-20
Publication Date 2021-05-27
Owner EMULATE INC. (USA)
Inventor
  • Stark, Alicia
  • Gurpreet, Brar

Abstract

The present invention relates to fluidic systems for producing IgG antibodies from co-cultures of white blood cells. In some embodiments, a microfluidic device containing co-cultures of an autologous whole peripheral white blood cell population including B cells, are used for providing antigen specific IgG antibody production from differentiating B cells (plasma cells). More specifically, high levels of IgM and IgG classes of antibodies are harvested from fluids flowing through the device. In some embodiments, IgG is produced during activation in the presence of antigen, including but not limited to therapeutic immunogenic compounds, e.g. engineered antibodies, vaccines, etc. In some embodiments, such co-cultures are further exposed to drug compounds e.g. for preclinical safety testing and individualized personal drug responses. In some embodiments, such antibody producing microfluidic devices are contemplated for use in companion diagnostic and complementary assays.

IPC Classes  ?

  • C07K 16/12 - Immunoglobulins, e.g. monoclonal or polyclonal antibodies against material from bacteria
  • C07K 16/40 - Immunoglobulins, e.g. monoclonal or polyclonal antibodies against enzymes
  • C07K 16/14 - Immunoglobulins, e.g. monoclonal or polyclonal antibodies against material from fungi, algae or lichens
  • C07K 16/18 - Immunoglobulins, e.g. monoclonal or polyclonal antibodies against material from animals or humans

56.

HOST-BIOME INTERACTIONS

      
Application Number 17088828
Status Pending
Filing Date 2020-11-04
First Publication Date 2021-04-22
Owner EMULATE, INC. (USA)
Inventor
  • Kerns, S. Jordan
  • Karalis, Catherine
  • Nawroth, Janna
  • Villenave, Remi
  • Obrigewitch, Jenifer
  • Roth, Doris
  • Salmon, Michael
  • Apostolou, Athanasia
  • Conegliano, David

Abstract

The present invention relates to a combination of microbes, cell culture systems and microfluidic fluidic systems for use in providing a human Intestine On-Chip with optimal intestinal motility. More specifically, in some embodiments, a microfluidic chip containing intestinal epithelial cells co-cultured with intestinal endothelial cells in the presence of bacteria, such as probiotic bacteria, may find use in providing an Intestine-On-Chip for testing intestinal motility function. In some embodiments, an Intestine On-Chip may be used for identifying (testing) therapeutic compounds continuing probiotic microbes or compounds for inducing intestinal motility for use in treating gastrointestinal disorders or diseases related to intestinal function.

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • C12N 1/20 - BacteriaCulture media therefor
  • C12Q 1/04 - Determining presence or kind of microorganismUse of selective media for testing antibiotics or bacteriocidesCompositions containing a chemical indicator therefor

57.

BRAIN-CHIP MODELING NEURODEGENERATION AND NEUROINFLAMMATION IN PARKINSON'S DISEASE

      
Application Number US2020056245
Publication Number 2021/077064
Status In Force
Filing Date 2020-10-19
Publication Date 2021-04-22
Owner EMULATE, INC. (USA)
Inventor
  • Pediaditakis, Iosif
  • Tien-Street, William R.
  • Kerns, S. Jordan
  • Hamilton, Geraldine
  • Levner, Daniel

Abstract

The invention relates to modeling brain neuronal disease in a microfluidic device, comprising a co-culture of iPS-derived brain endothelial cells; iPS-derived dopaminergic neurons; primary microglia; and primary astrocytes, a Blood-Brain-Barrier (BBB)-Chip and a Brain-Chip. In particular, cross-talk between glial cells (e.g. microglia and astrocytes) with neuronal cells, in further contact with endothelial cells is contemplated for use for identifying drug targets under conditions for inducing in vivo relevant neuronal inflammation, neurodegeneration and neuronal death. Thus, in one embodiment, a microfluidic Brain-Chip comprising a co-culture of brain cells is exposed to a-synuclein preformed fibrils (PFF), a type of pathogenic form of a-synuclein. Such a-synuclein PFF exposure demonstrates an in vivo relevant disease pathogenesis on a microfluidic device as a concentration- and time-controlled manner that may be used for preclinical drug evaluation for diseases related to neuronal inflammation, e.g. Parkinson's disease (PD).

IPC Classes  ?

  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C07K 14/47 - Peptides having more than 20 amino acidsGastrinsSomatostatinsMelanotropinsDerivatives thereof from animalsPeptides having more than 20 amino acidsGastrinsSomatostatinsMelanotropinsDerivatives thereof from humans from vertebrates from mammals
  • C12N 5/00 - Undifferentiated human, animal or plant cells, e.g. cell linesTissuesCultivation or maintenance thereofCulture media therefor

58.

Stem cell-based lung-on-chip models

      
Application Number 16983850
Grant Number 12098352
Status In Force
Filing Date 2020-08-03
First Publication Date 2021-03-04
Grant Date 2024-09-24
Owner EMULATE, INC. (USA)
Inventor
  • Nawroth, Janna
  • Barrile, Riccardo
  • Conegliano, David
  • Villenave, Remi
  • Lucchesi, Carolina
  • Nguyen, Justin
  • Varone, Antonio
  • Karalis, Catherine
  • Hamilton, Geraldine

Abstract

An in vitro microfluidic “organ-on-chip” device is described herein that mimics the structure and at least one function of specific areas of the epithelial system in vivo. In particular, a stem cell-based Lung-on-Chip is described. This in vitro microfluidic system can be used for modeling differentiation of cells on-chip into lung cells, e.g., a lung (Lung-On-Chip), bronchial (Airway-On-Chip; small-Airway-On-Chip), alveolar sac (Alveolar-On-Chip), etc., for use in modeling disease states of derived tissue, i.e. as healthy, pre-disease and diseased tissues. Additionally, stem cells under differentiation protocols for deriving (producing) differentiated lung cells off-chips may be seeded onto microfluidic devices at any desired point during the in vitro differentiation pathway for further differentiation on-chip or placed on-chip before, during or after terminal differentiation.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C12N 5/074 - Adult stem cells

59.

INNERVATED INTESTINE ON CHIP

      
Application Number 17017029
Status Pending
Filing Date 2020-09-10
First Publication Date 2021-02-25
Owner EMULATE, INC. (USA)
Inventor
  • Karalis, Catherine
  • Pediaditakis, Losif
  • Apostolou, Athanasia

Abstract

The present invention relates to a combination of cell culture systems and microfluidic fluidic systems for use in providing a human innervated Intestine On-Chip. More specifically, in some embodiments, a microfluidic chip containing intestinal epithelial cells co-cultured with intestinal endothelial cells or intestinal muscle cells, or both, in the presence of induced neural crest cells may find use in providing an innervated Intestine-On-Chip. In some embodiments, an innervated Intestine On-Chip may be used for identifying (testing) therapeutic compounds for use in treating gastrointestinal disorders or diseases.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means

60.

In vitro epithelial models comprising lamina propria-derived cells

      
Application Number 17024221
Grant Number 11059041
Status In Force
Filing Date 2020-09-17
First Publication Date 2021-02-04
Grant Date 2021-07-13
Owner Emulate, Inc. (USA)
Inventor
  • Kerns, S. Jordan
  • Barrile, Riccardo
  • Hamilton, Geraldine
  • Karalis, Catherine
  • Levner, Daniel
  • Lucchesi, Carolina
  • Varone, Antonio
  • Villenave, Remi

Abstract

An in vitro microfluidic “organ-on-chip” is described herein that mimics the structure and at least one function of specific areas of the epithelial system in vivo. In particular, a multicellular, layered, microfluidic culture is described, allowing for interactions between lamina propria-derived cells and the associated tissue specific epithelial cells and endothelial cells. This in vitro microfluidic system can be used for modeling inflammatory tissue, e.g., autoimmune disorders involving epithelia and diseases involving epithelial layers. These multicellular, layered microfluidic “organ-on-chip”, e.g. “epithelia-on-chip” further allow for comparisons between types of epithelia tissues, e.g., lung (Lung-On-Chip), bronchial (Airway-On-Chip), skin (Skin-On-Chip), cervix (Cervix-On-Chip), blood brain barrier (BBB-On-Chip), etc., in additional to neurovascular tissue, (Brain-On-Chip), and between different disease states of tissue, i.e. healthy, pre-disease and diseased areas. Additionally, these microfluidic “organ-on-chips” allow identification of cells and cellular derived factors driving disease states in addition to drug testing for reducing inflammation effecting epithelial regions.

IPC Classes  ?

  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • C12N 5/00 - Undifferentiated human, animal or plant cells, e.g. cell linesTissuesCultivation or maintenance thereofCulture media therefor

61.

Microfluidic control

      
Application Number 17036652
Grant Number 11999932
Status In Force
Filing Date 2020-09-29
First Publication Date 2021-01-28
Grant Date 2024-06-04
Owner EMULATE, INC. (USA)
Inventor
  • Hinojosa, Christopher David
  • Ahn, Grace

Abstract

The present invention is related to the field of fluidic devices, and in particular, microfluidic cell culture systems. The present invention provides pumping, recirculation and sampling for a microfluidic device or devices. The present invention provides solutions to the control of microfluidics for both terrestrial and space applications, including the control over the movement of fluids in zero gravity or microgravity.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 1/02 - Apparatus for enzymology or microbiology with agitation meansApparatus for enzymology or microbiology with heat exchange means
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means

62.

METHOD FOR ASSESSING A COMPOUND INTERACTING WITH A TARGET ON EPITHELIAL CELLS

      
Application Number EP2020068543
Publication Number 2021/001435
Status In Force
Filing Date 2020-07-01
Publication Date 2021-01-07
Owner
  • HOFFMANN-LA ROCHE INC. (USA)
  • F. HOFFMANN-LA ROCHE AG (Switzerland)
  • EMULATE, INC. (USA)
Inventor
  • Bertinetti-Lapatki, Cristina
  • Cabon, Lauriane
  • Roth, Adrian B.
  • Moisan, Annie
  • Gjorevski, Nikolche
  • Kerns, Jordan S.
  • Hamilton, Geraldine A.
  • Karalis, Catherine
  • Grant, Heather
  • Barrile, Riccardo
  • Barreiros Petropolis, Debora
  • Belgur, Chaitra

Abstract

Disclosed herein is a method for assessing a compound interacting with a target on polarized epithelial cells. The method comprising the steps of providing an organ chip comprising a main channel and polarized epithelial cells, wherein the main channel is divided into an apical channel and a basal channel separated by the polarized epithelial cells, wherein the apical side of the polarized epithelial cells is directed towards the apical channel and the basolateral side of the polarized epithelial cells is directed towards the basal channel. Determining the localization and optionally the expression level of the target on the polarized epithelial cells. Administrating the compound and optionally immune cells, preferably peripheral blood mononuclear cells (PBMC) to the basal channel, when the target is localized on the basolateral side of the epithelial cells or administrating the compound and optionally immune cells, preferably peripheral blood mononuclear cells (PBMC) to the apical channel, when the target is localized on the apical side of the epithelial cells. Measuring a parameter of the administration of the compound and the peripheral blood mononuclear cells.

IPC Classes  ?

  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing

63.

Organs-on-chips as a platform for epigenetics discovery

      
Application Number 16997509
Grant Number 12036548
Status In Force
Filing Date 2020-08-19
First Publication Date 2020-12-31
Grant Date 2024-07-16
Owner EMULATE, INC. (USA)
Inventor
  • Karalis, Catherine
  • Kujala, Ville

Abstract

The present invention relates to microfluidic fluidic devices, methods and systems for use in identifying epigenetic signatures in a range of sample types, e.g., cells established on a “chip” (including but not limited to single cell samples, cell populations, C cell layers and whole tissues, such as a biopsy), immune cells, cfDNA, exosomes, and the like. More specifically, in some embodiments, a microfluidic chip containing a sample is contacted with a test compound (e.g. DNA altering test compound, an RNA expression altering test compound, etc.) for use in providing a diagnostic epigenetic signature for that type of sample (or cell type) exposed to that specific test compound. In some embodiments, after contact with a test compound, effluent fluids (e.g. fluids exiting the “chip” that contacted the cells) are derived for testing as a “virtual blood draw.” In some embodiments, epigenetic signatures include (but are not limited to) identifying specific combinations of modifications of chromosomes and specific modifications of DNA.

IPC Classes  ?

  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12Q 1/6809 - Methods for determination or identification of nucleic acids involving differential detection
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means

64.

COMPOUND DISTRIBUTION IN MICROFLUIDIC DEVICES

      
Application Number US2020039830
Publication Number 2020/264303
Status In Force
Filing Date 2020-06-26
Publication Date 2020-12-30
Owner EMULATE, INC. (USA)
Inventor
  • Sliz, Josiah
  • Levner, Daniel
  • Zuckerman, Brian
  • Wen, Norman
  • Rubins, Jonathan
  • Shroff, Tanvi
  • Hinojosa, Christopher David
  • Ahn, Grace
  • Antontsev, Victor
  • Puerta, Jefferson
  • Conegliano, David
  • Kerns, S. Jordan

Abstract

The present invention is related to the field of microfluidics and compound distribution within microfluidic devices and their associated systems. In one embodiment, present invention aims to solve the problem of molecule and compound absorbency into the materials making up laboratory equipment, microfluidic devices and their related infrastructure, without unduly restricting gas transport within microfluidic devices.

IPC Classes  ?

  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • B01D 19/00 - Degasification of liquids
  • B01D 53/22 - Separation of gases or vapoursRecovering vapours of volatile solvents from gasesChemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases or aerosols by diffusion
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/04 - Apparatus for enzymology or microbiology with gas introduction means
  • G01N 1/40 - Concentrating samples

65.

Gas regulatory pressure vessel

      
Application Number 29618299
Grant Number D0905868
Status In Force
Filing Date 2017-09-20
First Publication Date 2020-12-22
Grant Date 2020-12-22
Owner EMULATE, Inc. (USA)
Inventor
  • Rowe, Lewis
  • Henshaw, Craig

66.

Gas mixer and pressure apparatus

      
Application Number 16983871
Grant Number 11597899
Status In Force
Filing Date 2020-08-03
First Publication Date 2020-12-17
Grant Date 2023-03-07
Owner EMULATE, INC. (USA)
Inventor
  • Rowe, Lewis
  • Henshaw, Craig
  • Gomes, Joshua
  • Thompson, Ii, Guy Robert
  • Coon, David James
  • Hinojosa, Christopher David

Abstract

The devices, methods and systems are described for providing controlled amounts of gas, gas pressure and vacuum to microfluidic devices the culturing of cells under flow conditions. The devices, methods, and systems contemplated here may also be used to control the environment surrounding the microfluidic devices; offer user control over experiments comprising microfluidic devices, such as the ability to directly or remotely control experiment conditions; and comprise information aggregation and transmission, such that experimental data may be collected, stored, aggregated and transmitted to users.

IPC Classes  ?

  • C12M 1/36 - Apparatus for enzymology or microbiology including condition or time responsive control, e.g. automatically controlled fermentors
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 1/04 - Apparatus for enzymology or microbiology with gas introduction means
  • C12M 1/34 - Measuring or testing with condition measuring or sensing means, e.g. colony counters

67.

HUMAN MICROPHYSIOLOGICAL CELL SYSTEM FOR LIVER DISEASE CONVERSTION PROV 1-18585 AND PROV 2-19154

      
Application Number 16995405
Status Pending
Filing Date 2020-08-17
First Publication Date 2020-12-03
Owner EMULATE, INC. (USA)
Inventor
  • Karalis, Catherine
  • Petropolis, Deborah Barrillos

Abstract

The present invention is related to the field of liver disease. Solid substrates comprising microfluidic channels (e.g., microchips) are configured to support growing and differentiating hepatocytes and are contemplated to provide a suitable environment for the development of fully functional liver tissue. These solid substrates can be used to induce various toxicity conditions in the liver tissue subsequent to the exposure to various chemicals. For example, chronic exposure to ethanol induces a clinical state of alcoholic liver disease in the liver tissue. Alternatively, certain disease states can result in the development of non-alcoholic liver diseases (e.g., non- alcoholic steatohepatitis; NASH).

IPC Classes  ?

  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • G01N 33/92 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing involving lipids, e.g. cholesterol

68.

COMPOSITIONS AND METHODS OF USING PARTIAL GEL LAYERS IN A MICROFLUIDIC DEVICE

      
Application Number US2020032145
Publication Number 2020/227648
Status In Force
Filing Date 2020-05-08
Publication Date 2020-11-12
Owner EMULATE, INC. (USA)
Inventor
  • Nawroth, Janna
  • Villenave, Remi
  • Petropolis, Debora, Barreiros
  • Shroff, Tanvi
  • Kerns, S., Jordan
  • Varone, Antonio

Abstract

The present invention relates to the use of gels for cell cultures, including but not limited to microfluidic devices and transwell devices, for culturing cells, such as organ cells, e.g. airway cells, intestinal cells, etc., and co-culturing cells, (e.g. parenchymal cells and endothelial cells, etc). As one example, the use of gels results in improved lung cell cultures, such as when using transwells and microfluidic devices, (e.g. for culturing healthy airway epithelial cells, culturing diseased airway epithelial cells, e.g., CF epithelial cells that are ciliated).

IPC Classes  ?

  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12M 1/34 - Measuring or testing with condition measuring or sensing means, e.g. colony counters
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • G01N 21/84 - Systems specially adapted for particular applications

69.

Rheologically biomimetic fluid surrogate

      
Application Number 16820530
Grant Number 11788044
Status In Force
Filing Date 2020-03-16
First Publication Date 2020-10-22
Grant Date 2023-10-17
Owner EMULATE, Inc. (USA)
Inventor
  • Varone, Antonio
  • Kasendra, Magdalena
  • Lucchesi, Carolina
  • Kerns, S. Jordan
  • Barrile, Riccardo
  • Barthakur, Sonalee

Abstract

The present invention contemplates compositions, devices and methods of simulating biological fluids in a fluidic device, including but not limited to a microfluidic chip. In one embodiment, fluid comprising a colloid under flow in a microfluidic chip has a fluid density or viscosity similar to a bodily fluid, e.g. blood, lymph, lung fluid, or the like. In one embodiment, a fluid is provided as a Theologically biomimetic blood surrogate or substitute for simulating physiological shear stress and cell dynamics in fluidic device, including but not limited to immune cells.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • C12M 1/00 - Apparatus for enzymology or microbiology

70.

MICROFLUIDIC DEVICES FOR TATTOO PIGMENT SAFETY

      
Application Number US2020025508
Publication Number 2020/198693
Status In Force
Filing Date 2020-03-27
Publication Date 2020-10-01
Owner EMULATE, INC. (USA)
Inventor
  • Leng, Lian
  • Nguyen, Justin
  • Wen, Norman
  • Varone, Antonio

Abstract

The present invention relates to devices including microfluidic devices, e.g. Skin on-Chip (Skin-Chip), for simulating a physiological response to agents and injury, including tattoo injury. In particular, a Skin-Chip is intended for use in replicating the interaction of tattoo ink with skin on a cellular level, including but not limited to mechanisms of wound healing following a tattoo gun and/or tattoo needle induced skin injury; ink particle effects such as pigment retention, pigment distribution and pigment clearance; inflammatory response to foreign particles, i.e. tattoo ink, etc. Further, effects of tattoo inks on simulated microfluidic skin is extended to determine effects of systemic ink exposure upon other organs through use of organ chips, e.g. liver-chips, kidney-chips, Lymph node-chips, etc. In some embodiments, safer ink formulations, e.g. less toxic ink particles, less toxic ink diluents, etc., are contemplated for development and use over currently available tattoo inks and diluents. Further contemplated is using a Tattooed Skin-Chip for developing rapid and non-toxic methods of removal of Tattoos in human skin.

IPC Classes  ?

71.

Physiology and pathophysiology of human gut: intestine-on-chip

      
Application Number 16825213
Grant Number 11566231
Status In Force
Filing Date 2020-03-20
First Publication Date 2020-09-10
Grant Date 2023-01-31
Owner EMULATE, INC. (USA)
Inventor
  • Apostolou, Athanasia
  • Varone, Antonio
  • Kasendra, Magdalena
  • Luc, Raymond

Abstract

An in vitro microfluidic intestine on-chip is described herein that mimics the structure and at least one function of specific areas of the gastrointestinal system in vivo. In particular, a multicellular, layered, microfluidic intestinal cell culture, which is some embodiments is derived from patient's enteroids-derived cells, is described comprising L cells, allowing for interactions between L cells and gastrointestinal epithelial cells, endothelial cells and immune cells. This in vitro microfluidic system can be used for modeling inflammatory gastrointestinal autoimmune tissue, e.g., diabetes, obesity, intestinal insufficiency and other inflammatory gastrointestinal disorders. These multicellular-layered microfluidic intestine on-chips further allow for comparisons between types of gastrointestinal tissues, e.g., small intestinal duodenum, small intestinal jejunum, small intestinal ileum, large intestinal colon, etc., and between disease states of gastrointestinal tissue, i.e. healthy, pre-disease and diseased areas. Additionally, these microfluidic gut-on-chips allow identification of cells and cellular derived factors driving disease states and drug testing for reducing inflammation.

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • G01N 1/30 - StainingImpregnating

72.

Microfluidic proximal tubule kidney-on-chip

      
Application Number 16454753
Grant Number 11725190
Status In Force
Filing Date 2019-06-27
First Publication Date 2020-08-27
Grant Date 2023-08-15
Owner EMULATE, INC. (USA)
Inventor
  • Jang, Kyung-Jin
  • Park, Hyoungshin
  • Jeanty, Sauveur
  • Ronxhi, Janey
  • Jadalannagari, Sushma
  • Hamilton, Geraldine A
  • Karalis, Catherine

Abstract

The present invention relates to microfluidic fluidic devices, methods and systems as microfluidic kidney on-chips, e.g. human Proximal Tubule-Kidney-Chip, Glomerulus (Kidney)-Chip, Collecting Duct (Kidney)-Chip. Devices, methods and systems are described for drug testing including drug transport and renal clearance. Further, such devices, methods and systems are used for determining drug-drug interactions and their effect upon renal transporter functions. Importantly, they may be used for pre-clinical and clinical drug development for treating kidney diseases and for personalized medicine.

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • C12Q 1/32 - Measuring or testing processes involving enzymes, nucleic acids or microorganismsCompositions thereforProcesses of preparing such compositions involving oxidoreductase involving dehydrogenase

73.

Microfluidic kidney-on-chip

      
Application Number 16352234
Grant Number 11534753
Status In Force
Filing Date 2019-03-13
First Publication Date 2020-08-27
Grant Date 2022-12-27
Owner EMULATE, INC. (USA)
Inventor
  • Kujala, Ville
  • Park, Hyoungshin
  • Barthakur, Sonalee
  • Jeanty, Sauveur
  • Zuckerman, Brian
  • Sliz, Josiah
  • Shroff, Tanvi
  • Hamilton, Geraldine A
  • Jang, Kyung-Jin
  • Nookala, Ananth
  • Luo, Gang
  • Mckenzie, Donald

Abstract

The present invention relates to microfluidic fluidic devices, methods and systems as microfluidic kidney on-chips, e.g. human Proximal Tubule-Chip.

IPC Classes  ?

  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12Q 1/6809 - Methods for determination or identification of nucleic acids involving differential detection
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means

74.

MICROFLUIDIC PROXIMAL TUBULE KIDNEY-ON-CHIP

      
Application Number US2020019512
Publication Number 2020/172670
Status In Force
Filing Date 2020-02-24
Publication Date 2020-08-27
Owner EMULATE, INC. (USA)
Inventor
  • Jang, Kyung-Jin
  • Ronxhi, Janey
  • Sliz, Josiah
  • Jeanty, Sauveur
  • Jadalannagari, Sushma
  • Nookala, Ananth
  • Park, Hyoungshin

Abstract

The present invention relates to microfluidic fluidic devices, methods and systems as microfluidic kidney on-chips, e.g. human Proximal Tubule-Kidney-Chip, Glomerulus (Kidney)- Chip, Collecting Duct (Kidney)-Chip. Devices, methods and systems are described for drug testing including drug transport and renal clearance. Further, such devices, methods and systems are used for determining drug-drug interactions and their effect upon renal transporter functions, importantly, they may be used for pre-clinical and clinical drug development for treating kidney diseases and for personalized medicine.

IPC Classes  ?

  • A61M 1/34 - Filtering material out of the blood by passing it through a membrane, i.e. hemofiltration, diafiltration

75.

ZOË-CM2

      
Serial Number 90112165
Status Registered
Filing Date 2020-08-13
Registration Date 2022-11-08
Owner EMULATE, INC. ()
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

Cell culture apparatus for laboratory use, namely, cell culture instrument using tissue cultures in a micro fluidic device

76.

HIGH-CONTENT IMAGING OF MICROFLUIDIC DEVICES

      
Application Number US2020014590
Publication Number 2020/154386
Status In Force
Filing Date 2020-01-22
Publication Date 2020-07-30
Owner EMULATE, INC. (USA)
Inventor
  • Jang, Kyung-Jin
  • Levner, Daniel
  • Kodella, Konstantia-Roumvini
  • Rubins, Jonathan
  • Petropolis, Debora, Barreiros
  • Peel, Samantha
  • Corrigan, Adam, M.
  • Ehrardt, Beate
  • Pinto, Pedro
  • Boeckeler, Matt
  • Foster, Alison, J.
  • Williams, Dominic
  • Hamilton, Geraldine
  • Ewart, Lorna

Abstract

The present invention is related to high-content microscopy imaging of microfluidic cell culture systems. A method of high-content microfluidic device microscopy is contemplated, along with related statistical analysis and microfluidic device adaptors.

IPC Classes  ?

  • G01N 15/14 - Optical investigation techniques, e.g. flow cytometry
  • G01N 33/48 - Biological material, e.g. blood, urineHaemocytometers
  • G02B 21/02 - Objectives
  • G02B 21/24 - Base structure
  • G02B 21/34 - Microscope slides, e.g. mounting specimens on microscope slides

77.

INTESTINE-CHIP: DIFFERENTIAL GENE EXPRESSION MODEL

      
Application Number 16742497
Status Pending
Filing Date 2020-01-14
First Publication Date 2020-07-16
Owner EMULATE, INC. (USA)
Inventor
  • Kasendra, Magdalena
  • Apostolou, Athanasia
  • Lucchesi, Carolina

Abstract

The present invention relates to fluidic systems for use in providing biomarkers for human Intestine On-Chip. More specifically, in some embodiments, a microfluidic chip containing intestinal epithelial cells co-cultured with intestinal endothelial cells in the presence of stretch and flow are used for identifying differentially expressed genes as biomarkers, e.g. for specific types of drug testing for use in treating gastrointestinal disorders or diseases related to intestinal function.

IPC Classes  ?

  • C12M 3/00 - Tissue, human, animal or plant cell, or virus culture apparatus
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues

78.

Perfusion module lid without ports

      
Application Number 29701966
Grant Number D0888983
Status In Force
Filing Date 2019-08-15
First Publication Date 2020-06-30
Grant Date 2020-06-30
Owner EMULATE, Inc. (USA)
Inventor
  • Hinojosa, Christopher David
  • Gomes, Joshua

79.

Microfluidic chip without pressure features for use with a fluid perfusion module

      
Application Number 29642618
Grant Number D0888270
Status In Force
Filing Date 2018-03-30
First Publication Date 2020-06-23
Grant Date 2020-06-23
Owner EMULATE, Inc. (USA)
Inventor
  • Thompson, Ii, Guy Robert
  • Wen, Norman
  • Rowe, Lewis

80.

Microfluidic chip with microchannels

      
Application Number 29675951
Grant Number D0888273
Status In Force
Filing Date 2019-01-07
First Publication Date 2020-06-23
Grant Date 2020-06-23
Owner EMULATE, Inc. (USA)
Inventor
  • Thompson, Ii, Guy Robert
  • Wen, Norman
  • Rowe, Lewis

81.

Effects of space travel on human brain cells

      
Application Number 16712439
Grant Number 11697792
Status In Force
Filing Date 2019-12-12
First Publication Date 2020-06-11
Grant Date 2023-07-11
Owner EMULATE, INC. (USA)
Inventor
  • Hinojosa, Christopher David
  • Sliz, Josiah
  • Pediaditakis, Iosif
  • Barthakur, Sonalee

Abstract

The invention generally relates to a microfluidic platforms or “chips” for testing and conducting experiments on the International Space Station (ISS). More specifically, microfluidic Brain-On-Chip, comprising neuronal and vascular endothelial cells, will be analyzed in both healthy and inflamed states to assess how the circumstances of space travel affect the human brain.

IPC Classes  ?

  • C12M 1/00 - Apparatus for enzymology or microbiology
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • G01N 1/18 - Devices for withdrawing samples in the liquid or fluent state with provision for splitting samples into portions
  • C12M 1/26 - Inoculator or sampler

82.

Surface functionalization

      
Application Number 16739959
Grant Number 11067571
Status In Force
Filing Date 2020-01-10
First Publication Date 2020-06-11
Grant Date 2021-07-20
Owner EMULATE, INC. (USA)
Inventor
  • Levner, Daniel
  • Kerns, S. Jordan
  • Puerta, Jefferson

Abstract

This invention is in the field of surface modification. In particular, the invention relates to the surface modification of microfluidic devices to alter surface hydrophobicity characteristics.

IPC Classes  ?

  • G01N 33/543 - ImmunoassayBiospecific binding assayMaterials therefor with an insoluble carrier for immobilising immunochemicals
  • C08J 7/04 - Coating
  • B05D 1/38 - Successively applying liquids or other fluent materials, e.g. without intermediate treatment with intermediate treatment
  • B05D 3/06 - Pretreatment of surfaces to which liquids or other fluent materials are to be appliedAfter-treatment of applied coatings, e.g. intermediate treating of an applied coating preparatory to subsequent applications of liquids or other fluent materials by exposure to radiation
  • B05D 5/00 - Processes for applying liquids or other fluent materials to surfaces to obtain special surface effects, finishes or structures
  • C08J 7/12 - Chemical modification
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C08J 7/043 - Improving the adhesiveness of the coatings per se, e.g. forming primers

83.

Advanced pulmonary models

      
Application Number 16692383
Grant Number 11542476
Status In Force
Filing Date 2019-11-22
First Publication Date 2020-03-19
Grant Date 2023-01-03
Owner EMULATE, INC. (USA)
Inventor
  • Villenave, Remi
  • Lucchesi, Carolina
  • Nguyen, Justin
  • Karalis, Catherine
  • Hamilton, Geraldine
  • Baddal, Buket
  • Salmon, Michael

Abstract

The present invention relates to microfluidic fluidic systems and methods for the in vitro modeling diseases of the lung and small airway. In one embodiment, the invention relates to a system for testing responses of a microfluidic Small Airway-on-Chip infected with one or more infectious agents (e.g. respiratory viruses) as a model of respiratory disease exacerbation (e.g. asthma exacerbation). In one embodiment, this disease model on a microfluidic chip allows for a) the testing of anti-inflammatory and/or anti-viral compounds introduced into the system, as well as b) the monitoring of the participation, recruitment and/or movement of immune cells, including the transmigration of cells. In particular, this system provides, in one embodiment, an in-vitro platform for modeling severe asthma as “Severe Asthma-on-Chip.” In some embodiments, this invention provides a model of viral-induced asthma in humans for use in identifying potentially effective treatments.

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12N 1/20 - BacteriaCulture media therefor

84.

ER-1

      
Application Number 1509711
Status Registered
Filing Date 2019-11-28
Registration Date 2019-11-28
Owner EMULATE, INC (USA)
NICE Classes  ? 01 - Chemical and biological materials for industrial, scientific and agricultural use

Goods & Services

Reagents for scientific or medical research use.

85.

ER-2

      
Application Number 1509714
Status Registered
Filing Date 2019-11-28
Registration Date 2019-11-28
Owner EMULATE, INC (USA)
NICE Classes  ? 01 - Chemical and biological materials for industrial, scientific and agricultural use

Goods & Services

Reagents for scientific or medical research use.

86.

CHIP-S1

      
Application Number 1509710
Status Registered
Filing Date 2019-11-28
Registration Date 2019-11-28
Owner EMULATE, INC (USA)
NICE Classes  ? 05 - Pharmaceutical, veterinary and sanitary products

Goods & Services

Diagnostic agents, preparations and substances for medical purposes.

87.

Development of spinal cord on a microfluidic chip

      
Application Number 16286185
Grant Number 12091650
Status In Force
Filing Date 2019-02-26
First Publication Date 2019-11-28
Grant Date 2024-09-17
Owner EMULATE, INC. (USA)
Inventor
  • Kerns, S. Jordan
  • Wen, Norman
  • Lucchesi, Carolina
  • Hinojosa, Christopher David
  • Fraser, Jacob
  • Hamilton, Geraldine
  • Vatine, Gad
  • Sances, Samuel
  • Svendsen, Clive
  • Levner, Daniel
  • Sareen, Dhruv

Abstract

The invention relates to culturing brain endothelial cells, and optionally astrocytes and neurons in a fluidic device under conditions whereby the cells mimic the structure and function of the blood brain barrier. Culture of such cells in a microfluidic device, whether alone or in combination with other cells, drives maturation and/or differentiation further than existing systems.

IPC Classes  ?

  • C12N 5/0793 - Neurons
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12N 5/00 - Undifferentiated human, animal or plant cells, e.g. cell linesTissuesCultivation or maintenance thereofCulture media therefor
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C12N 5/079 - Neural cells

88.

HOST- BIOME INTERACTIONS

      
Application Number US2019031596
Publication Number 2019/217732
Status In Force
Filing Date 2019-05-09
Publication Date 2019-11-14
Owner EMULATE, INC. (USA)
Inventor
  • Kerns, S., Jordan
  • Karalis, Catherine
  • Nawroth, Janna
  • Villenave, Remi
  • Obrigewitch, Jenifer
  • Roth, Doris
  • Salmon, Michael
  • Apostolou, Athanasia
  • Conegliano, David

Abstract

The present invention relates to a combination of microbes, cell culture systems and microfluidic fluidic systems for use in providing a human Intestine On-Chip with optimal intestinal motility. More specifically, in some embodiments, a microfluidic chip containing intestinal epithelial cells co-cuitured with intestinal endothelial cells in the presence of bacteria, such as probiotic bacteria, may find use in providing an Intestine- On-Chip for testing intestinal motility function. In some embodiments, an Intestine On- Chip may be used for identifying (testing) therapeutic compounds continuing probiotic microbes or compounds for inducing intestinal motility' for use in treating gastrointestinal disorders or diseases related to intestinal function.

IPC Classes  ?

  • C12M 1/00 - Apparatus for enzymology or microbiology
  • C12M 1/06 - Apparatus for enzymology or microbiology with gas introduction means with agitator, e.g. impeller
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12M 1/34 - Measuring or testing with condition measuring or sensing means, e.g. colony counters
  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • C12M 3/00 - Tissue, human, animal or plant cell, or virus culture apparatus
  • C12M 3/02 - Tissue, human, animal or plant cell, or virus culture apparatus with means providing suspensions

89.

MICROFLUIDIC CONTROL

      
Application Number US2019025449
Publication Number 2019/195338
Status In Force
Filing Date 2019-04-02
Publication Date 2019-10-10
Owner EMULATE, INC. (USA)
Inventor
  • Hinojosa, Christopher, David
  • Ahn, Grace

Abstract

The present invention is related to the field of fluidic devices, and in particular, microfluidic cell culture systems. The present invention provides pumping, recirculation and sampling for a microfluidic device or devices. The present invention provides solutions to the control of microfluidics for both terrestrial and space applications, including the control over the movement of fluids in zero gravity or microgravity.

IPC Classes  ?

  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • B65D 35/28 - Pliable tubular containers adapted to be permanently deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid materialHolders therefor with auxiliary devices for expelling contents
  • B65D 35/30 - Pistons

90.

CHIP S-1

      
Serial Number 88649917
Status Registered
Filing Date 2019-10-10
Registration Date 2020-05-05
Owner EMULATE, INC (USA)
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

Cell culture apparatus for laboratory use, namely, cell culture chamber

91.

INNERVATED INTESTINE ON CHIP

      
Application Number US2019022082
Publication Number 2019/178251
Status In Force
Filing Date 2019-03-13
Publication Date 2019-09-19
Owner EMULATE, INC. (USA)
Inventor
  • Karalis, Catherine
  • Pediaditakis, Iosif
  • Apostolou, Athanasia

Abstract

The present invention relates to a combination of cell culture systems and microfluidic fluidic systems for use in providing a human innervated Intestine On-Chip. More specifically, in some embodiments, a microfluidic chip containing intestinal epithelial cells co-cultured with intestinal endothelial cells or intestinal muscle cells, or both, in the presence of induced neural crest cells may find use in providing an innervated Intestine-On-Chip. In some embodiments, an innervated Intestine On-Chip may be used for identifying (testing) therapeutic compounds for use in treating gastrointestinal disorders or diseases.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 3/00 - Tissue, human, animal or plant cell, or virus culture apparatus
  • C12Q 1/02 - Measuring or testing processes involving enzymes, nucleic acids or microorganismsCompositions thereforProcesses of preparing such compositions involving viable microorganisms
  • C12M 1/12 - Apparatus for enzymology or microbiology with sterilisation, filtration, or dialysis means
  • C12M 1/34 - Measuring or testing with condition measuring or sensing means, e.g. colony counters
  • C12Q 1/00 - Measuring or testing processes involving enzymes, nucleic acids or microorganismsCompositions thereforProcesses of preparing such compositions
  • G01N 1/00 - SamplingPreparing specimens for investigation

92.

Perfusion module lid

      
Application Number 29570865
Grant Number D0860471
Status In Force
Filing Date 2016-07-12
First Publication Date 2019-09-17
Grant Date 2019-09-17
Owner EMULATE, Inc. (USA)
Inventor
  • Hinojosa, Christopher
  • Gomes, Joshua

93.

HUMAN MICROPHYSIOLOGICAL CELL SYSTEM FOR LIVER DISEASE CONVERSION WITH PROV 1-18585 AND PROV 2-19154

      
Application Number US2019018787
Publication Number 2019/164962
Status In Force
Filing Date 2019-02-20
Publication Date 2019-08-29
Owner EMULATE, INC. (USA)
Inventor
  • Karalis, Catherine
  • Petropolis, Debora Barrillos

Abstract

The present invention is related to the field of liver disease. Solid substrates comprising microfluidic channels (e.g., microchips) are configured to support growing and differentiating hepatocytes and are contemplated to provide a suitable environment for the development of fully functional liver tissue. These solid substrates can be used to induce various toxicity conditions in the liver tissue subsequent to the exposure to various chemicals. For example, chronic exposure to ethanol induces a clinical state of alcoholic liver disease in the liver tissue. Alternatively, certain disease states can result in the development of non-alcoholic liver diseases (e.g., non- alcoholic steatohepatitis; NASH).

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing

94.

ORGANS-ON-CHIPS AS A PLATFORM FOR EPIGENETICS DISCOVERY

      
Application Number US2019019250
Publication Number 2019/165279
Status In Force
Filing Date 2019-02-22
Publication Date 2019-08-29
Owner EMULATE, INC. (USA)
Inventor
  • Karalis, Catherine
  • Kujala, Ville

Abstract

The present invention relates to microfluidic fluidic devices, methods and systems for use in identifying epigenetic signatures in a range of sample types, e.g., cells established on a "chip" (including but not limited to single cell samples, cell populations, cell layers and whole tissues, such as a biopsy), immune cells, cfDNA, exosomes, and the like. More specifically, in some embodiments, a microfluidic chip containing a sample is contacted with a test compound (e.g. DNA altering test compound, an RNA expression altering test compound, etc.) for use in providing a diagnostic epigenetic signature for that type of sample (or cell type) exposed to that specific test compound. In some embodiments, after contact with a test compound, effluent fluids (e.g. fluids exiting the "chip" that contacted the cells) are derived for testing as a "virtual blood draw." In some embodiments, epigenetic signatures include (but are not limited to) identifying specific combinations of modifications of chromosomes and specific modifications of DNA.

IPC Classes  ?

  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing

95.

GAS MIXER AND PRESSURIZER APPARATUS

      
Application Number US2019016985
Publication Number 2019/157136
Status In Force
Filing Date 2019-02-07
Publication Date 2019-08-15
Owner EMULATE, INC. (USA)
Inventor
  • Rowe, Lewis
  • Henshaw, Craig
  • Gomes, Joshua
  • Thompson, Guy, Robert, Ii
  • Coon, David, James
  • Hinojosa, Christopher, David

Abstract

Devices, methods and systems are described for providing controlled amounts of gas, gas pressure and vacuum to microfluidic devices the culturing of cells under flow conditions.

IPC Classes  ?

  • B01F 11/00 - Mixers with shaking, oscillating, or vibrating mechanisms
  • B01F 13/00 - Other mixers; Mixing plant, including combinations of dissimilar mixers
  • B01F 15/02 - Feed or discharge mechanisms

96.

STEM CELL-BASED LUNG-ON-CHIP MODELS

      
Application Number US2019016680
Publication Number 2019/153004
Status In Force
Filing Date 2019-02-05
Publication Date 2019-08-08
Owner EMULATE, INC. (USA)
Inventor
  • Nawroth, Janna
  • Barrile, Riccardo
  • Conegliano, David
  • Villenave, Remi
  • Lucchesi, Carolina
  • Nguyen, Justin
  • Varone, Antonio
  • Karalis, Catherine
  • Hamilton, Geraldine

Abstract

in vitro in vitro in vitro differentiation pathway for further differentiation on-chip or placed on-chip before, during or after terminal differentiation. Additionally, these microfluidic "stem cell-based Lung-on-Chip" allow identification of cells and cellular derived factors driving disease states in addition to drug testing for diseases, infections and for reducing inflammation effecting lung alveolar and/or epithelial regions. Further, fluidic devices are provided seeded with primary alveolar cells for use in providing a functional Type II and Type I cell layer, wherein Type II cells express and secrete surfactants, such as Surfactant B (Surf B; SP-B) and Surfactant C (Surf C; SP-C), which were detectable at the protein level by antibody staining in Type II cells. A number of uses are contemplated for the devices and cells, including but not limited to, for use under inflammatory conditions, in drug development and testing, and for individualized (personalized) medicine. Moreover, an ALI-M was developed for supporting multiple cell types in co-cultures with functional Type II and Type I cells.

IPC Classes  ?

  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • C12N 5/074 - Adult stem cells
  • C12N 5/16 - Animal cells
  • C12N 5/02 - Propagation of single cells or cells in suspensionMaintenance thereofCulture media therefor
  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means

97.

Perfusion manifold assembly

      
Application Number 16226229
Grant Number 10988722
Status In Force
Filing Date 2018-12-19
First Publication Date 2019-06-06
Grant Date 2021-04-27
Owner EMULATE, Inc. (USA)
Inventor
  • Levner, Daniel
  • Sliz, Josiah Daniel
  • Hinojosa, Christopher David
  • Thompson, Ii, Guy Robert
  • Martinus Van Ruijven, Petrus Wilhelmus
  • Solomon, Matthew Daniel
  • Potzner, Christian Alexander
  • Tuohy, Patrick Sean
  • Gomes, Joshua
  • Wen, Norman
  • Freake, Jacob
  • Sabin, Doug

Abstract

The invention relates to a perfusion manifold assembly that allows for perfusion of a microfluidic device, such as an organ on a chip microfluidic device comprising cells that mimic cells in an organ in the body, that is detachably linked with an assembly so that fluid enters ports of the microfluidic device from a fluid reservoir, optionally without tubing, at a controllable flow rate.

IPC Classes  ?

  • C12M 3/06 - Tissue, human, animal or plant cell, or virus culture apparatus with filtration, ultrafiltration, inverse osmosis or dialysis means
  • C12M 1/00 - Apparatus for enzymology or microbiology
  • B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
  • C12M 1/42 - Apparatus for the treatment of microorganisms or enzymes with electrical or wave energy, e.g. magnetism, sonic wave
  • C12M 1/34 - Measuring or testing with condition measuring or sensing means, e.g. colony counters
  • C12N 5/071 - Vertebrate cells or tissues, e.g. human cells or tissues
  • A01N 1/02 - Preservation of living parts
  • C12M 3/00 - Tissue, human, animal or plant cell, or virus culture apparatus
  • C12M 1/36 - Apparatus for enzymology or microbiology including condition or time responsive control, e.g. automatically controlled fermentors
  • B01L 9/00 - Supporting devicesHolding devices

98.

ER-1

      
Serial Number 88457342
Status Registered
Filing Date 2019-06-03
Registration Date 2019-12-10
Owner EMULATE, INC (USA)
NICE Classes  ? 01 - Chemical and biological materials for industrial, scientific and agricultural use

Goods & Services

Reagents for scientific or medical research use

99.

ER-2

      
Serial Number 88457392
Status Registered
Filing Date 2019-06-03
Registration Date 2019-12-10
Owner EMULATE, INC (USA)
NICE Classes  ? 01 - Chemical and biological materials for industrial, scientific and agricultural use

Goods & Services

Reagents for scientific or medical research use

100.

CHIP-S1

      
Serial Number 88448690
Status Registered
Filing Date 2019-05-28
Registration Date 2019-12-10
Owner EMULATE, INC (USA)
NICE Classes  ? 05 - Pharmaceutical, veterinary and sanitary products

Goods & Services

Diagnostic agents, preparations and substances for medical purposes
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