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Modeling of LMNA-Related Dilated Cardiomyopathy Using Human Induced Pluripotent Stem Cells

机译:使用人类诱导的多能干细胞对LMNA相关的扩张性心肌病进行建模

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摘要

Dilated cardiomyopathy (DCM) is one of the leading causes of heart failure and heart transplantation. A portion of familial DCM is due to mutations in the LMNA gene encoding the nuclear lamina proteins lamin A and C and without adequate treatment these patients have a poor prognosis. To get better insights into pathobiology behind this disease, we focused on modeling LMNA-related DCM using human induced pluripotent stem cell derived cardiomyocytes (hiPSC-CM). Primary skin fibroblasts from DCM patients carrying the most prevalent Finnish founder mutation (p.S143P) in LMNA were reprogrammed into hiPSCs and further differentiated into cardiomyocytes (CMs). The cellular structure, functionality as well as gene and protein expression were assessed in detail. While mutant hiPSC-CMs presented virtually normal sarcomere structure under normoxia, dramatic sarcomere damage and an increased sensitivity to cellular stress was observed after hypoxia. A detailed electrophysiological evaluation revealed bradyarrhythmia and increased occurrence of arrhythmias in mutant hiPSC-CMs on β-adrenergic stimulation. Mutant hiPSC-CMs also showed increased sensitivity to hypoxia on microelectrode array and altered Ca2+ dynamics. Taken together, p.S143P hiPSC-CM model mimics hallmarks of LMNA-related DCM and provides a useful tool to study the underlying cellular mechanisms of accelerated cardiac degeneration in this disease.
机译:扩张型心肌病(DCM)是心力衰竭和心脏移植的主要原因之一。家族性DCM的一部分是由于编码核纤层蛋白A和C核纤层蛋白的LMNA基因突变所致,这些患者的预后不良。为了更好地了解这种疾病的病理生物学,我们集中在使用人诱导的多能干细胞衍生的心肌细胞(hiPSC-CM)对LMNA相关的DCM进行建模。将LMNA中携带最普遍的芬兰创始人突变(p.S143P)的DCM患者的原代皮肤成纤维细胞重新编程为hiPSC,然后进一步分化为心肌细胞(CM)。详细评估了细胞结构,功能以及基因和蛋白质表达。虽然突变的hiPSC-CM在常氧下呈现出几乎正常的肌节结构,但在缺氧后观察到剧烈的肌节损伤和对细胞应激的敏感性增加。一项详细的电生理评估显示,在β-肾上腺素刺激下,突变型hiPSC-CMs的心律失常和心律不齐的发生率增加。突变的hiPSC-CMs在微电极阵列上还表现出对缺氧的敏感性增加,并且改变了Ca 2 + 动力学。两者合计,p.S143P hiPSC-CM模型模仿LMNA相关DCM的标志,并提供了有用的工具来研究该疾病中心脏加速变性的基本细胞机制。

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