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Impaired mitochondrial homeostasis and neurodegeneration: towards new therapeutic targets?

机译:线粒体稳态和神经变性受损:朝着新的治疗目标迈进吗?

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摘要

The sustained integrity of the mitochondrial population of a cell is critical for maintained cell health, and disruption of that integrity is linked strongly to human disease, especially to the neurodegenerative diseases. These are appalling diseases causing untold levels of suffering for which treatment is woefully inadequate. Understanding the mechanisms that disturb mitochondrial homeostasis may therefore prove key to identification of potential new therapeutic pathways. Mechanisms causing mitochondrial dysfunction include the acute catastrophic loss of function caused by opening of the mitochondrial permeability transition pore (mPTP), which collapses bioenergetic function and initiates cell death. This is best characterised in ischaemic reperfusion injury, although it may also contribute to a number of other diseases. More insidious disturbances of mitochondrial homeostasis may result from impaired balance in the pathways that promote mitochondrial repair (biogenesis) and pathways that remove dysfunctional mitochondria (mitophagy). Impaired coordination between these processes is emerging as a key feature of a number of neurodegenerative and neuromuscular disorders. Here we review pathways that may prove to be valuable potential therapeutic targets, focussing on the molecular mechanisms that govern the coordination of these processes and their involvement in neurodegenerative diseases.
机译:细胞线粒体群体的持续完整性对于维持细胞健康至关重要,这种完整性的破坏与人类疾病,尤其是与神经退行性疾病密切相关。这些是令人震惊的疾病,造成令人难以置信的痛苦,而治疗却严重不足。因此,了解扰乱线粒体稳态的机制可能证明是鉴定潜在新治疗途径的关键。导致线粒体功能障碍的机制包括由打开线粒体通透性过渡孔(mPTP)引起的急性灾难性功能丧失,这会破坏生物能功能并引发细胞死亡。尽管它也可能导致许多其他疾病,但它在缺血性再灌注损伤中的特征最为明显。线粒体内稳态的更多隐性干扰可能是由促进线粒体修复的途径(生物发生)和消除功能异常的线粒体的途径(线粒体)的平衡受损导致的。这些过程之间的协调障碍正在成为许多神经退行性疾病和神经肌肉疾病的关键特征。在这里,我们回顾可能被证明是有价值的潜在治疗靶点的途径,重点研究控制这些过程及其在神经退行性疾病中的参与的分子机制。

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