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[铁死亡在主动脉夹层中作用的研究进展]

[Research progress on the role of ferroptosis in aortic dissection].

作者信息

Hong Xiang, Zhang Yuchong, Fu Weiguo, Wang Lixin

机构信息

Department of Vascular Surgery, Zhongshan Hospital, Fudan University (Xiamen Branch), Xiamen 361015, Fujian Province, China.

Xiamen Municipal Vascular Disease Precise Diagnose & Treatment Lab, Xiamen 361015, Fujian Province, China.

出版信息

Zhejiang Da Xue Xue Bao Yi Xue Ban. 2024 Dec 25;53(6):726-734. doi: 10.3724/zdxbyxb-2024-0186.

Abstract

Recent studies have shown that iron metabolism dysregulation and lipid peroxidation-induced ferroptosis, triggered by oxidative stress, play a key role in the development of aortic dissection. Dysregulated iron metabolism leads to excessive production of hydroxyl radicals due to abnormal iron levels and heme metabolism, while lipid peroxidation is linked to system Xc dysfunction and accumulation of phospholipid hydroperoxides. These factors synergistically disrupt aortic homeostasis and drive ferroptosis in vascular cells, including endothelial and smooth muscle cells. Furthermore, disruptions in ferroptosis-related genes, along with risk factors such as smoking, epigenetic modifications such as protein methylation, and abnormalities in immune cells, particularly T cells, are closely linked to aortic dissection. Several small molecules and nanomaterials have shown potential in inhibiting ferroptosis in this context. This review elucidates the roles of ferroptosis in aortic dissection and proposes strategies for its targeted prevention and treatment.

摘要

最近的研究表明,由氧化应激引发的铁代谢失调和脂质过氧化诱导的铁死亡,在主动脉夹层的发展中起关键作用。铁代谢失调由于铁水平异常和血红素代谢导致羟基自由基的过度产生,而脂质过氧化与系统Xc功能障碍和磷脂氢过氧化物的积累有关。这些因素协同破坏主动脉内环境稳态并驱动血管细胞(包括内皮细胞和平滑肌细胞)发生铁死亡。此外,铁死亡相关基因的破坏,以及吸烟等危险因素、蛋白质甲基化等表观遗传修饰,以及免疫细胞尤其是T细胞的异常,都与主动脉夹层密切相关。在这种情况下,几种小分子和纳米材料已显示出抑制铁死亡的潜力。这篇综述阐明了铁死亡在主动脉夹层中的作用,并提出了针对性预防和治疗的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b13/11736346/7ff7f5c396f8/1008-9292-2024-53-6-726-g001.jpg

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