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<i>ankrd1a</i> consistently marks cardiomyocytes bordering the injury or scar area and affects their dedifferentiation during zebrafish heart regeneration after cryoinjury

2025-06-26

Abstract excerpt

<h4>ABSTRACT</h4> In contrast to humans, zebrafish have a remarkable ability to regenerate injured heart through a highly orchestrated process involving all cardiac structures. To replace the lost myocardium, resident cardiomyocytes (CMs) dedifferentiate and proliferate, invading the injured area. The response of the myocardium is preceded by the activation of the epicardium and endocardium, which form active sca...

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Literature Corpus work
04af030a-51d2-5e92-bd57-f5cd4b4fc090
DOI
10.1101/2025.06.24.661322
Open publication

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<i>ankrd1a</i> consistently marks cardiomyocytes bordering the injury or scar area and affects their dedifferentiation during zebrafish heart regeneration after cryoinjuryDOI 10.1101/2025.06.24.661322
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