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Dataset related to the article "Ca2+ dysregulation in cardiac stromal cells sustains fibro-adipose remodeling in Arrhythmogenic Cardiomyopathy and can be modulated by flecainide"

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Zenodo2023-01-24 更新2026-05-26 收录
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This record contains raw data related to the article "Ca2+ dysregulation in cardiac stromal cells sustains fibro-adipose remodeling in Arrhythmogenic Cardiomyopathy and can be modulated by flecainide" Abstract <strong>Background: </strong>Cardiac mesenchymal stromal cells (C-MSC) were recently shown to differentiate into adipocytes and myofibroblasts to promote the aberrant remodeling of cardiac tissue that characterizes arrhythmogenic cardiomyopathy (ACM). A calcium (Ca<sup>2+</sup>) signaling dysfunction, mainly demonstrated in mouse models, is recognized as a mechanism impacting arrhythmic risk in ACM cardiomyocytes. Whether similar mechanisms influence ACM C-MSC fate is still unknown. Thus, we aim to ascertain whether intracellular Ca<sup>2+</sup> oscillations and the Ca<sup>2+</sup> toolkit are altered in human C-MSC obtained from ACM patients, and to assess their link with C-MSC-specific ACM phenotypes. <strong>Methods and results: </strong>ACM C-MSC show enhanced spontaneous Ca<sup>2+</sup> oscillations and concomitant increased Ca<sup>2+</sup>/Calmodulin dependent kinase II (CaMKII) activation compared to control cells. This is manly linked to a constitutive activation of Store-Operated Ca<sup>2+</sup> Entry (SOCE), which leads to enhanced Ca<sup>2+</sup> release from the endoplasmic reticulum through inositol-1,4,5-trisphosphate receptors. By targeting the Ca<sup>2+</sup> handling machinery or CaMKII activity, we demonstrated a causative link between Ca<sup>2+</sup> oscillations and fibro-adipogenic differentiation of ACM C-MSC. Genetic silencing of the desmosomal gene PKP2 mimics the remodelling of the Ca<sup>2+</sup> signalling machinery occurring in ACM C-MSC. The anti-arrhythmic drug flecainide inhibits intracellular Ca<sup>2+</sup> oscillations and fibro-adipogenic differentiation by selectively targeting SOCE. <strong>Conclusions: </strong>Altogether, our results extend the knowledge of Ca<sup>2+</sup> dysregulation in ACM to the stromal compartment, as an etiologic mechanism of C-MSC-related ACM phenotypes. A new mode of action of flecainide on a novel mechanistic target is unveiled against the fibro-adipose accumulation in ACM.

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Zenodo
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2023-01-17
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