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Calcium signalling in developing cardiomyocytes: implications for model systems and disease

机译:发育中的心肌细胞中的钙信号传导:对模型系统和疾病的影响

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Adult cardiomyocytes exhibit complex Ca2+ homeostasis, enabling tight control of contraction and relaxation. This intricate regulatory system develops gradually, with progressive maturation of specialized structures and increasing capacity of Ca2+ sources and sinks. In this review, we outline current understanding of these developmental processes, and draw parallels to pathophysiological conditions where cardiomyocytes exhibit a striking regression to an immature state of Ca2+ homeostasis. We further highlight the importance of understanding developmental physiology when employing immature cardiomyocyte models such as cultured neonatal cells and stem cells.
机译:成年心肌细胞表现出复杂的Ca2 +稳态,从而能够严格控制收缩和松弛。随着专业结构的逐步成熟和Ca2 +来源和汇的能力的提高,这种复杂的监管体系逐渐发展。在这篇综述中,我们概述了目前对这些发育过程的理解,并与病理生理条件相类似,在该病理生理条件下,心肌细胞表现出明显的向Ca2 +动态平衡状态的退化。当采用未成熟的心肌细胞模型(如培养的新生儿细胞和干细胞)时,我们进一步强调了理解发育生理的重要性。

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