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铁死亡作为帕金森病神经炎症的主要因素和治疗靶点

Ferroptosis as a Major Factor and Therapeutic Target for Neuroinflammation in Parkinson's Disease.

作者信息

Ko Chih-Jan, Gao Shih-Ling, Lin Tsu-Kung, Chu Pei-Yi, Lin Hung-Yu

机构信息

Department of General Surgery, Changhua Christian Hospital, 135 Nanhsiao Street, Changhua 500, Taiwan.

School of Medicine, Kaohsiung Medical University, Kaohsiung 807, Taiwan.

出版信息

Biomedicines. 2021 Nov 12;9(11):1679. doi: 10.3390/biomedicines9111679.

Abstract

Mounting evidence suggests that ferroptosis is not just a consequence but also a fundamental contributor to the development and progression of Parkinson's disease (PD). Ferroptosis is characterized as iron-dependent regulated cell death caused by excessive lipid peroxidation, leading to plasma membrane rupture, release of damage-associated molecular patterns, and neuroinflammation. Due to the crucial role of intracellular iron in mediating the production of reactive oxygen species and the formation of lipid peroxides, ferroptosis is intimately controlled by regulators involved in many aspects of iron metabolism, including iron uptake, storage and export, and by pathways constituting the antioxidant systems. Translational and transcriptional regulation of iron homeostasis and redox status provide an integrated network to determine the sensitivity of ferroptosis. We herein review recent advances related to ferroptosis, ranging from fundamental mechanistic discoveries and cutting-edge preclinical animal studies, to clinical trials in PD and the regulation of neuroinflammation via ferroptosis pathways. Elucidating the roles of ferroptosis in the survival of dopaminergic neurons and microglial activity can enhance our understanding of the pathogenesis of PD and provide opportunities for the development of novel prevention and treatment strategies.

摘要

越来越多的证据表明,铁死亡不仅是帕金森病(PD)发生发展的一个后果,也是其一个重要的促成因素。铁死亡的特征是由过度脂质过氧化引起的铁依赖性调节性细胞死亡,导致质膜破裂、损伤相关分子模式的释放和神经炎症。由于细胞内铁在介导活性氧的产生和脂质过氧化物的形成中起关键作用,铁死亡受到参与铁代谢多个方面(包括铁摄取、储存和输出)的调节因子以及构成抗氧化系统的途径的密切控制。铁稳态和氧化还原状态的翻译和转录调控提供了一个综合网络来决定铁死亡的敏感性。我们在此综述了与铁死亡相关的最新进展,从基本机制发现和前沿临床前动物研究,到PD的临床试验以及通过铁死亡途径对神经炎症的调节。阐明铁死亡在多巴胺能神经元存活和小胶质细胞活性中的作用,可以增进我们对PD发病机制的理解,并为开发新的预防和治疗策略提供机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/beab/8615560/509cc2d60a35/biomedicines-09-01679-g001.jpg

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