Cardiology Division, Department of Medicine, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong, China.
Centre of Translational Stem Cell Biology, Hong Kong Science and Technology Park, Hong Kong, China.
Int J Mol Sci. 2021 Jul 29;22(15):8132. doi: 10.3390/ijms22158132.
Inherited cardiomyopathies are among the major causes of heart failure and associated with significant mortality and morbidity. Currently, over 70 genes have been linked to the etiology of various forms of cardiomyopathy, some of which are X-linked. Due to the lack of appropriate cell and animal models, it has been difficult to model these X-linked cardiomyopathies. With the advancement of induced pluripotent stem cell (iPSC) technology, the ability to generate iPSC lines from patients with X-linked cardiomyopathy has facilitated in vitro modelling and drug testing for the condition. Nonetheless, due to the mosaicism of the X-chromosome inactivation, disease phenotypes of X-linked cardiomyopathy in heterozygous females are also usually more heterogeneous, with a broad spectrum of presentation. Recent advancements in iPSC procedures have enabled the isolation of cells with different lyonisation to generate isogenic disease and control cell lines. In this review, we will summarise the current strategies and examples of using an iPSC-based model to study different types of X-linked cardiomyopathy. The potential application of isogenic iPSC lines derived from a female patient with heterozygous Danon disease and drug screening will be demonstrated by our preliminary data. The limitations of an iPSC-derived cardiomyocyte-based platform will also be addressed.
遗传性心肌病是心力衰竭的主要原因之一,与较高的死亡率和发病率相关。目前,已有 70 多个基因与各种形式的心肌病的病因相关,其中一些是 X 连锁的。由于缺乏合适的细胞和动物模型,很难对这些 X 连锁型心肌病进行建模。随着诱导多能干细胞(iPSC)技术的进步,能够从 X 连锁型心肌病患者中生成 iPSC 系,促进了该疾病的体外建模和药物测试。尽管如此,由于 X 染色体失活的嵌合性,杂合子女性的 X 连锁型心肌病的疾病表型通常也更加多样化,表现谱较宽。最近在 iPSC 程序方面的进展使能够分离具有不同 Lyonisation 的细胞,从而生成同基因疾病和对照细胞系。在这篇综述中,我们将总结目前使用基于 iPSC 的模型来研究不同类型 X 连锁型心肌病的策略和实例。我们的初步数据将展示从杂合性 Danon 病女性患者中分离的同基因 iPSC 系的潜在应用和药物筛选。还将讨论 iPSC 衍生的心肌细胞为基础的平台的局限性。