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Mitochondrial Dysfunction in Parkinsons Disease: Pathogenesis and Neuroprotection

机译:帕金森氏病的线粒体功能障碍:发病机制和神经保护作用。

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摘要

Mitochondria are vitally important organelles involved in an array of functions. The most notable is their prominent role in energy metabolism, where they generate over 90% of our cellular energy in the form of ATP through oxidative phosphorylation. Mitochondria are involved in various other processes including the regulation of calcium homeostasis and stress response. Mitochondrial complex I impairment and subsequent oxidative stress have been identified as modulators of cell death in experimental models of Parkinson's disease (PD). Identification of specific genes which are involved in the rare familial forms of PD has further augmented the understanding and elevated the role mitochondrial dysfunction is thought to have in disease pathogenesis. This paper provides a review of the role mitochondria may play in idiopathic PD through the study of experimental models and how genetic mutations influence mitochondrial activity. Recent attempts at providing neuroprotection by targeting mitochondria are described and their progress assessed.
机译:线粒体是涉及一系列功能的至关重要的细胞器。最值得注意的是它们在能量代谢中的重要作用,它们通过氧化磷酸化以ATP的形式产生超过90%的细胞能量。线粒体还参与其他各种过程,包括钙稳态和压力反应的调节。在帕金森氏病(PD)的实验模型中,线粒体复合物I损伤和随后的氧化应激已被确定为细胞死亡的调节剂。鉴定涉及PD的罕见家族形式的特定基因进一步增强了人们的理解,并提高了线粒体功能障碍在疾病发病机理中的作用。本文通过研究实验模型以及遗传突变如何影响线粒体活性,综述了线粒体在特发性PD中可能发挥的作用。描述了通过靶向线粒体提供神经保护的最新尝试,并评估了它们的进展。

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