诱导多能干细胞模拟小脑共济失调的最新进展。

Maggie M K Wong, Lauren M Watson, Esther B E Becker
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引用次数: 7

摘要

小脑共济失调是一组无法治愈的脑部疾病,主要由小脑浦肯野细胞的进行性功能障碍和变性引起。异质性共济失调缺乏可靠的疾病模型,阻碍了对潜在致病机制的理解,也阻碍了对这些毁灭性疾病的有效治疗的发展。诱导多能干细胞(iPSC)技术领域的最新进展为更好地理解和潜在地逆转疾病病理提供了新的可能性。鉴于在几种类型的共济失调中观察到的神经发育表型,基于ipsc的模型有可能为疾病进展提供重要的见解,并为早期干预治疗的发展提供机会。然而,迄今为止,很少有研究成功地使用ipsc衍生的细胞来模拟小脑共济失调。在这篇综述中,我们重点介绍了人类ipsc衍生的浦肯野细胞的最新突破。我们还强调了未来需要解决的挑战,以便充分利用这些模型来模拟小脑共济失调的分子机制和开发有效的治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Recent advances in modelling of cerebellar ataxia using induced pluripotent stem cells.

The cerebellar ataxias are a group of incurable brain disorders that are caused primarily by the progressive dysfunction and degeneration of cerebellar Purkinje cells. The lack of reliable disease models for the heterogeneous ataxias has hindered the understanding of the underlying pathogenic mechanisms as well as the development of effective therapies for these devastating diseases. Recent advances in the field of induced pluripotent stem cell (iPSC) technology offer new possibilities to better understand and potentially reverse disease pathology. Given the neurodevelopmental phenotypes observed in several types of ataxias, iPSC-based models have the potential to provide significant insights into disease progression, as well as opportunities for the development of early intervention therapies. To date, however, very few studies have successfully used iPSC-derived cells to model cerebellar ataxias. In this review, we focus on recent breakthroughs in generating human iPSC-derived Purkinje cells. We also highlight the future challenges that will need to be addressed in order to fully exploit these models for the modelling of the molecular mechanisms underlying cerebellar ataxias and the development of effective therapeutics.

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