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Induced pluripotent stem cells from friedreich ataxia patients fail to upregulate frataxin during in vitro differentiation to peripheral sensory neurons

机译:弗里德赖希共济失调患者诱导的多能干细胞在体外分化为周围感觉神经元的过程中未能上调frataxin

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摘要

The value of human disease models, which are based on induced pluripotent stem cells (iPSCs), depends on the capacity to generate specifically those cell types affected by pathology. We describe a new iPSC-based model of Friedreich ataxia (FRDA), an autosomal recessive neurodegenerative disorder with an intronic GAA repeat expansion in the frataxin gene. As the peripheral sensory neurons are particularly susceptible to neurodegeneration in FRDA, we applied a development-based differentiation protocol to generate specifically these cells. FRDA and control iPSC lines were efficiently differentiated toward neural crest progenitors and peripheral sensory neurons. The progress of the cell lines through discrete steps of in vitro differentiation was closely monitored by expression levels of key markers for peripheral neural development. Since it had been suggested that FRDA pathology might start early during ontogenesis, we investigated frataxin expression in our development-related model. A pronounced frataxin deficit was found in FRDA iPSCs and neural crest cells compared to controls. Whereas we identified an upregulation of frataxin expression during sensory specification for control cells, this increase was not observed for FRDA peripheral sensory neurons. This early failure, aggravating frataxin deficiency in a specifically vulnerable human cell population, indicates a developmental component in FRDA.
机译:基于诱导性多能干细胞(iPSC)的人类疾病模型的价值取决于产生受病理影响的特定细胞类型的能力。我们描述了一种新的基于iPSC的Friedreich共济失调(FRDA)模型,常染色体隐性神经退行性疾病具有frataxin基因中的内含GAA重复扩展。由于外周感觉神经元特别容易受到FRDA中神经变性的影响,因此我们应用了基于发育的分化方案来专门生成这些细胞。 FRDA和控制iPSC线有效地分化为神经c祖细胞和周围感觉神经元。通过外周神经发育的关键标志物的表达水平来密切监测细胞系通过离散体外分化步骤的进程。由于有人提出FRDA病理可能在本体发育的早期开始,因此我们在与发育相关的模型中研究了frataxin的表达。与对照组相比,在FRDA iPSC和神经c细胞中发现明显的frataxin缺陷。尽管我们在对照细胞的感觉指标中发现了frataxin表达的上调,但对于FRDA周围感觉神经元未观察到这种增加。这种早期的失败加剧了特别脆弱的人类细胞群中frataxin的缺乏,这表明FRDA是发育的组成部分。

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