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Schwann cell mitochondria as key regulators in the development and maintenance of peripheral nerve axons

机译:Schwann细胞线粒体作为关键调节因子在外周神经轴突的开发和维护

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摘要

Formation of myelin sheaths by Schwann cells (SCs) enables rapid and efficient transmission of action potentials in peripheral axons, and disruption of myelination results in disorders that involve decreased sensory and motor functions. Given that construction of SC myelin requires high levels of lipid and protein synthesis, mitochondria, which are pivotal in cellular metabolism, may be potential regulators of the formation and maintenance of SC myelin. Supporting this notion, abnormal mitochondria are found in SCs of neuropathic peripheral nerves in both human patients and the relevant animal models. However, evidence for the importance of SC mitochondria in myelination has been limited, until recently. Several studies have recently used genetic approaches that allow SC-specific ablation of mitochondrial metabolic activity in living animals to show the critical roles of SC mitochondria in the development and maintenance of peripheral nerve axons. Here, we review current knowledge about the involvement of SC mitochondria in the formation and dysfunction of myelinated axons in the peripheral nervous system.
机译:Schwann细胞(SCS)形成髓鞘的形成能够快速有效地传播外围轴突中的动作电位,并且髓鞘导致涉及感觉和电动机功能的疾病的破坏。鉴于Sc髓鞘的构建需要高水平的脂质和蛋白质合成,对细胞代谢中枢转的线粒体可能是SC髓鞘的形成和维持的潜在调节因素。支持这一观点,在人类患者和相关动物模型中发现了InforicathonicRia的Iscopathondria。然而,近期髓鞘中Sc线粒体重要性的证据是有限的。几项研究最近使用了遗传方法,允许SC-Compicond的灭活在活性动物中的线粒体代谢活性,以展示Sc线粒体在外周神经轴突的开发和维持中的关键作用。在这里,我们审查了关于SC线粒体参与的目前了解静脉内部神经系统中肢体化轴突的形成和功能障碍。

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