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US20160305927A1 - Patterned cardiomyocyte culture on microelectrode array - Google Patents

Patterned cardiomyocyte culture on microelectrode array
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US20160305927A1
US20160305927A1US15/190,958US201615190958AUS2016305927A1US 20160305927 A1US20160305927 A1US 20160305927A1US 201615190958 AUS201615190958 AUS 201615190958AUS 2016305927 A1US2016305927 A1US 2016305927A1
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culture
cardiomyocytes
cardiac
patterned
multielectrode array
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US15/190,958
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Peter Molnar
Anupama Natarajan
Maria Stancescu
James Hickman
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University of Central Florida Research Foundation Inc
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University of Central Florida Research Foundation Inc
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Priority to US15/190,958priorityCriticalpatent/US20160305927A1/en
Assigned to UNIVERSITY OF CENTRAL FLORIDA RESEARCH FOUNDATION, INC.reassignmentUNIVERSITY OF CENTRAL FLORIDA RESEARCH FOUNDATION, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: STANCESCU, MARIA, NATARAJAN, ANUPAMA, HICKMAN, JAMES, MOLNAR, PETER
Publication of US20160305927A1publicationCriticalpatent/US20160305927A1/en
Assigned to NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENTreassignmentNATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENTCONFIRMATORY LICENSE (SEE DOCUMENT FOR DETAILS).Assignors: UNIVERSITY OF CENTRAL FLORIDA
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Abstract

The invention provides a culture of patterned cardiomyocytes, the culture including a support substrate bearing a multielectrode array, a negative surface resistant to cell attachment and deposited on the support substrate covering the multi-electrode array, a pattern ablated on the negative surface, a positive surface promoting cell attachment deposited on the pattern ablated on the negative surface; and cardiomyocytes adherent to the positive surface and growing aligned along the pattern ablated on the negative surface. The invention also includes a method of making the culture of patterned cardiomyocytes and a method of in vitro method of testing the effect of a compound on cardiac function by measuring electrical output from the patterned cardiomyocytes.

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US15/190,9582009-11-032016-06-23Patterned cardiomyocyte culture on microelectrode arrayAbandonedUS20160305927A1 (en)

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US15/190,958US20160305927A1 (en)2009-11-032016-06-23Patterned cardiomyocyte culture on microelectrode array

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US25750409P2009-11-032009-11-03
US12/938,701US9404140B1 (en)2009-11-032010-11-03Patterned cardiomyocyte culture on microelectrode array
US15/190,958US20160305927A1 (en)2009-11-032016-06-23Patterned cardiomyocyte culture on microelectrode array

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US20160305927A1true US20160305927A1 (en)2016-10-20

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US15/190,958AbandonedUS20160305927A1 (en)2009-11-032016-06-23Patterned cardiomyocyte culture on microelectrode array

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WO2023183371A3 (en)*2022-03-222023-10-26The Trustees Of Columbia University In The City Of New YorkEngineered heart tissue model of restrictive cardiomyopathy for drug discovery
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CN118048240B (en)*2024-03-062025-03-11江苏省人民医院(南京医科大学第一附属医院)Non-optical-dependent heart organoid chip and detection method
CN120214285A (en)*2025-05-282025-06-27浙江大学 An experimental method for long-term dynamic detection of cardiomyocyte energy stress state

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* Cited by examiner, † Cited by third party
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US12130283B2 (en)2012-08-172024-10-29University Of Central Florida Research Foundation, Inc.Methods, systems and compositions for functional in vitro cellular models of mammalian systems
US11614437B2 (en)2013-01-302023-03-28University Of Central Florida Research Foundation, Inc.Devices, systems, and methods for evaluating cardiac parameters
US11022605B2 (en)2016-08-262021-06-01University Of Central Florida Research Foundation, Inc.Multi-component in vitro system to deduce cell signaling pathways by electronic stimulation patterns
WO2023183371A3 (en)*2022-03-222023-10-26The Trustees Of Columbia University In The City Of New YorkEngineered heart tissue model of restrictive cardiomyopathy for drug discovery

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