Progressive stretch enhances growth and maturation of 3D stem-cell-derived myocardium.
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ABSTRACT: Bio-engineered myocardium has great potential to substitute damaged myocardium and for studies of myocardial physiology and disease, but structural and functional immaturity still implies limitations. Current protocols of engineered heart tissue (EHT) generation fall short of simulating the conditions of postnatal myocardial growth, which are characterized by tissue expansion and increased mechanical load. To investigate whether these two parameters can improve EHT maturation, we developed a new approach for the generation of cardiac tissues based on biomimetic stimulation under application of continuously increasing stretch. Methods: EHTs were generated by assembling cardiomyocytes derived from human induced pluripotent stem cells (hiPSC-CM) at high cell density in a low collagen h
SUBMITTER: Lu K
PROVIDER: S-EPMC8120210 | biostudies-literature | 2021
REPOSITORIES: biostudies-literature
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