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Systems for the Functional Evaluation of Human Heart Tissues Derived from Pluripotent Stem Cells
Author(s) -
Kozue Murata,
Hidetoshi Masumoto
Publication year - 2022
Publication title -
stem cells
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.159
H-Index - 229
eISSN - 1549-4918
pISSN - 1066-5099
DOI - 10.1093/stmcls/sxac022
Subject(s) - induced pluripotent stem cell , biology , regenerative medicine , drug discovery , stem cell , cardiotoxicity , stromal cell , cardiac muscle , neuroscience , human heart , myocyte , cell type , microbiology and biotechnology , computational biology , bioinformatics , cell , anatomy , cancer research , embryonic stem cell , medicine , biochemistry , genetics , chemotherapy , gene
Human pluripotent stem cells (hPSCs) are expected to be a promising cell source in regenerative medicine and drug discovery for the treatment of various intractable diseases. An approach for creating a 3-dimensional (3D) structure from hPSCs that mimics human cardiac tissue functions has made it theoretically possible to conduct drug discovery and cardiotoxicity tests by assessing pharmacological responses in human cardiac tissues by a screening system using a compound library. The myocardium functions as a tissue composed of organized vascular networks, supporting stromal cells and cardiac muscle cells. Considering this, the reconstruction of tissue structure by various cells of cardiovascular lineages, such as vascular cells and cardiac muscle cells, is desirable for the ideal conformation of hPSC-derived cardiac tissues. Heart-on-a-chip, an organ-on-a-chip system to evaluate the physiological pump function of 3D cardiac tissues might hold promise in medical researchs such as drug discovery and regenerative medicine. Here, we review various modalities to evaluate the function of human stem cell-derived cardiac tissues and introduce heart-on-a-chip systems that can recapitulate physiological parameters of hPSC-derived cardiac tissues.

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