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A novel ionic model for matured and paced atrial–like hiPSC–CMs integrating <i>I</i> <sub> <i>Kur</i> </sub> and <i>I</i> <sub> <i>KCa</i> </sub> currents

2024-01-15

Abstract excerpt

Human induced pluripotent stem cells–derived cardiomyocytes have revolutionized the field of regenerative medicine, offering unparalleled potential for in–vitro modeling of normal and pathological human cardiomyocytes. The ability to produce stem cardiac myocytes in abundance has opened new avenues for drug efficacy and safety testing, as well as the study of conditions such as atrial fibrillation, a familial car...

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Literature Corpus work
019c7315-510c-519d-b20e-311db5e8cf77
DOI
10.1101/2024.01.12.574782
Open publication

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A novel ionic model for matured and paced atrial–like hiPSC–CMs integrating <i>I</i> <sub> <i>Kur</i> </sub> and <i>I</i> <sub> <i>KCa</i> </sub> currentsDOI 10.1101/2024.01.12.574782
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