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线粒体自噬与细胞凋亡/坏死性凋亡之间的串扰洞察:机制及在缺血性卒中中的临床应用

Insight into Crosstalk Between Mitophagy and Apoptosis/Necroptosis: Mechanisms and Clinical Applications in Ischemic Stroke.

作者信息

Yang Yan-di, Li Zi-Xin, Hu Xi-Min, Wan Hao, Zhang Qi, Xiao Rui, Xiong Kun

机构信息

Department of Anatomy and Neurobiology, School of Basic Medical Science, Central South University, Changsha, 410013, China.

Clinical Medicine Eight-year Program, 03 Class, 18 Grade, Xiangya School of Medicine, Central South University, Changsha, 410013, China.

出版信息

Curr Med Sci. 2022 Apr;42(2):237-248. doi: 10.1007/s11596-022-2579-3. Epub 2022 Apr 7.

Abstract

Ischemic stroke is a serious cerebrovascular disease with high morbidity and mortality. As a result of ischemia-reperfusion, a cascade of pathophysiological responses is triggered by the imbalance in metabolic supply and demand, resulting in cell loss. These cellular injuries follow various molecular mechanisms solely or in combination with this disorder. Mitochondria play a driving role in the pathophysiological processes of ischemic stroke. Once ischemic stroke occurs, damaged cells would respond to such stress through mitophagy. Mitophagy is known as a conservatively selective autophagy, contributing to the removal of excessive protein aggregates and damaged intracellular components, as well as aging mitochondria. Moderate mitophagy may exert neuroprotection against stroke. Several pathways associated with the mitochondrial network collectively contribute to recovering the homeostasis of the neurovascular unit. However, excessive mitophagy would also promote ischemia-reperfusion injury. Therefore, mitophagy is a double-edged sword, which suggests that maximizing the benefits of mitophagy is one of the direction of future efforts. This review emphasized the role of mitophagy in ischemic stroke, and highlighted the crosstalk between mitophagy and apoptosis/necroptosis.

摘要

缺血性中风是一种发病率和死亡率都很高的严重脑血管疾病。由于缺血再灌注,代谢供需失衡引发一系列病理生理反应,导致细胞死亡。这些细胞损伤单独或与这种紊乱共同遵循各种分子机制。线粒体在缺血性中风的病理生理过程中起驱动作用。一旦发生缺血性中风,受损细胞会通过线粒体自噬对这种应激做出反应。线粒体自噬是一种保守的选择性自噬,有助于清除过量的蛋白质聚集体和受损的细胞内成分,以及衰老的线粒体。适度的线粒体自噬可能对中风发挥神经保护作用。与线粒体网络相关的几种途径共同有助于恢复神经血管单元的稳态。然而,过度的线粒体自噬也会促进缺血再灌注损伤。因此,线粒体自噬是一把双刃剑,这表明最大化线粒体自噬的益处是未来努力的方向之一。本综述强调了线粒体自噬在缺血性中风中的作用,并突出了线粒体自噬与凋亡/坏死性凋亡之间的相互作用。

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