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Familial Parkinsons disease iPSCs show cellular deficits in mitochondrial responses that can be pharmacologically rescued

机译:家族性帕金森氏病的ipsC显示线粒体细胞反应的赤字可以药理获救

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摘要

Parkinson's disease (PD) is a common neurodegenerative disease caused by genetic and environmental factors. We analyzed induced pluripotent stem cell (iPSC)-derived neural cells from PD patients and presymptomatic individuals carrying mutations in the PINK1 and LRRK2 genes, and healthy control subjects. We measured several aspects of mitochondrial responses in the iPSC-derived neural cells including production of reactive oxygen species, mitochondrial respiration, proton leakage and intraneuronal movement of mitochondria. Cellular vulnerability associated with mitochondrial function in iPSC-derived neural cells from PD patients and at-risk individuals could be rescued with coenzyme Q10, rapamycin or the LRRK2 kinase inhibitor GW5074. Analysis of mitochondrial responses in iPSC-derived neural cells from PD patients carrying different mutations provides insights into convergence of cellular disease mechanisms between different familial forms of PD and highlights the importance of oxidative stress and mitochondrial dysfunction in PD.
机译:帕金森氏病(PD)是由遗传和环境因素引起的常见神经退行性疾病。我们分析了来自PD患者和在PINK1和LRRK2基因中携带突变的症状前个体的诱导多能干细胞(iPSC)源性神经细胞,以及健康对照组。我们测量了iPSC衍生的神经细胞中线粒体反应的几个方面,包括活性氧的产生,线粒体呼吸,质子泄漏和线粒体内神经内运动。 PD患者和高危人群的iPSC衍生神经细胞中与线粒体功能相关的细胞脆弱性可以用辅酶Q10,雷帕霉素或LRRK2激酶抑制剂GW5074挽救。对来自携带不同突变的PD患者的iPSC衍生神经细胞中线粒体反应的分析,为深入了解PD不同家族型PD之间细胞疾病机制的融合提供了重要信息,并突出了PD中氧化应激和线粒体功能障碍的重要性。

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