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铁死亡:脂质膜的生物锈。

Ferroptosis: Biological Rust of Lipid Membranes.

机构信息

VIB-UGent Center for Inflammation Research (IRC), Ghent, Belgium.

Department of Biomedical Molecular Biology (DBMB), Ghent University, Ghent, Belgium.

出版信息

Antioxid Redox Signal. 2021 Aug 20;35(6):487-509. doi: 10.1089/ars.2020.8175. Epub 2020 Sep 9.

DOI:10.1089/ars.2020.8175
PMID:32808533
Abstract

Iron is an essential element required for growth and proper functioning of the body. However, an excess of labile ferrous iron increases the risk of oxidative stress-induced injury due to the high reactivity of the unpaired reactive electrons of both ferrous iron and oxygen. This high reactivity can be exemplified in the outside world by one of its consequences, rust formation. In cells, this redox-active iron is involved in the formation of lipid radicals. Defect or insufficient membrane-protective mechanisms can result in iron-catalyzed excessive lipid peroxidation and subsequent cell death, now conceptualized as ferroptosis. Growing reports propose the detrimental role of iron and ferroptosis in many experimental disease models such as ischemia-reperfusion, acute and chronic organ injuries. This review first provides a snapshot of iron metabolism, followed by a brief introduction of the molecular mechanisms of ferroptosis, as an iron-dependent lipid peroxidation-driven mode of cell death. Upon describing how iron dysbiosis affects ferroptosis induction, we elaborate on the detrimental role of the iron-ferroptosis axis in several diseases. Despite compelling findings suggesting a role of ferroptosis in experimental animal models, the exact contribution of ferroptosis in human contexts still needs further investigation. Development of reliable ferroptosis biomarkers will be an important step in characterizing ferroptosis in human disease. This can provide therapeutic opportunities aiming at targeting ferroptosis in human diseases. 35, 487-509.

摘要

铁是人体生长和正常功能所必需的元素。然而,由于亚铁和氧的未配对反应电子的高反应性,不稳定的亚铁铁增加了氧化应激诱导损伤的风险。这种高反应性在外部世界可以通过其后果之一来举例说明,即铁锈的形成。在细胞中,这种氧化还原活性铁参与了脂质自由基的形成。 膜保护机制的缺陷或不足可能导致铁催化的过度脂质过氧化和随后的细胞死亡,现在被概念化为铁死亡。越来越多的报告提出了铁和铁死亡在许多实验疾病模型中的有害作用,如缺血再灌注、急性和慢性器官损伤。 本综述首先提供了铁代谢的快照,然后简要介绍了铁死亡的分子机制,作为一种依赖于铁的脂质过氧化驱动的细胞死亡模式。在描述铁失调如何影响铁死亡诱导之后,我们详细阐述了铁-铁死亡轴在几种疾病中的有害作用。 尽管有令人信服的证据表明铁死亡在实验动物模型中起作用,但铁死亡在人类背景中的确切作用仍需要进一步研究。开发可靠的铁死亡生物标志物将是在人类疾病中描述铁死亡的重要步骤。这可以为靶向人类疾病中的铁死亡提供治疗机会。 35, 487-509.

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