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首页> 外文期刊>Molecular and cellular neurosciences >Mitochondrial dysfunction in neurons in Friedreich's ataxia
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Mitochondrial dysfunction in neurons in Friedreich's ataxia

机译:在Friedreich Ataxia的神经元中的线粒体功能障碍

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摘要

Friedreich's ataxia is a multisystemic genetic disorder within the family of mitochondrial diseases that is characterized by reduced levels of the essential mitochondrial protein frataxin. Based on clinical evidence, the peripheral nervous system is affected early, neuronal dysfunction progresses towards the central nervous system, and other organs (such as heart and pancreas) are affected later. However, little attention has been given to the specific aspects of mitochondria function altered by frataxin depletion in the nervous system. For years, commonly accepted views on mitochondria dysfunction in Friedreich's ataxia stemmed from studies using nonneuronal systems and may not apply to neurons, which have their own bioenergetic needs and present a unique, extensive neurite network. Moreover, the basis of the selective neuronal vulnerability, which primarily affects large sensory neurons in the dorsal root ganglia, large principal neurons in the dentate nuclei of the cerebellum, and pyramidal neurons in the cerebral cortex, remains elusive.
机译:Friedreich的Ataxia是一种多系统遗传疾病,在线粒体疾病家族内,其特征在于,其特征在于基本线粒体蛋白谱系的水平降低。基于临床证据,外周神经系统早期影响,神经元功能障碍朝向中枢神经系统进行,其他器官(如心脏和胰腺)受到影响。然而,已经对神经系统中的呋喃键耗竭改变的线粒体功能的具体方面已经注意到了很少的注意。多年来,Friedreich Ataxia的Mitochondria功能障碍普遍接受的观点来自使用非生物系统的研究,并且可能不适用于具有自己的生物能源需求并呈现独特的广泛的神经元网络。此外,选择性神经元脆性的基础主要影响背根神经节中的大型感官神经元,小脑细胞核中的大型主神经元,以及脑皮质中的锥体神经元,仍然难以捉摸。

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