Myocardial ferroptosis may exacerbate the progression of atrial fibrillation through isolevuglandins.

IF 3.4 3区 医学 Q2 MEDICINE, RESEARCH & EXPERIMENTAL European Journal of Medical Research Pub Date : 2025-02-12 DOI:10.1186/s40001-025-02302-2
Zhi-Jie Yue, Xin-Ru Li, Zhan Shi, Xue-Wen Li
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Abstract

Atrial fibrillation (AF) poses a serious health threat to human health and causes various adverse effects. It is currently the most common type of arrhythmia in adults. Long-term AF induces a series of heart-remodeling events, including mainly cardiac structural remodeling and electrical remodeling, which further exacerbates AF. The oxidative stress has been shown to play a role in inducing myocardial remodeling and the progression of AF. Recent studies have shown that ferroptosis occurs in the myocardium of patients with AF, which exacerbates oxidative stress and may constitute a new mechanism for the progression of AF. However, it is unknown to us how ferroptosis is involved in the initiation and maintenance of AF, so the purpose of this review is to elucidate the possible underlying mechanism of ferroptosis exacerbating AF. We reviewed the latest studies on myocardial ferroptosis and AF and speculate that the lipid peroxidation products isolevuglandins (IsoLGs), which are produced during myocardial ferroptosis, may be involved in the progression of AF through two pathways: (1) IsoLGs inhibit the degradation of myocardial collagen, worsening myocardial fibrosis; and (2) IsoLGs promote the occurrence of amyloidosis in the myocardium and increase the risk of AF. Consequently, we aim to prevent the progression of atrial fibrillation by either suppressing the production of IsoLGs or enhancing their clearance process to inhibit ferroptosis in the myocardium, improving the prognosis of patients with AF.

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心肌铁下垂可通过等变素加剧房颤的进展。
心房颤动(Atrial fibrillation, AF)严重威胁着人类的健康,并引起各种不良反应。它是目前成人最常见的心律失常类型。长期房颤诱发一系列心脏重构事件,主要包括心脏结构重构和电重构,进一步加重房颤。氧化应激在诱导心肌重构和房颤进展中发挥作用,近期研究发现房颤患者心肌发生铁上沉,加重了氧化应激,可能构成房颤进展的新机制。目前尚不清楚铁下垂如何参与房颤的发生和维持,因此本综述旨在阐明铁下垂加重房颤可能的潜在机制。我们回顾了心肌铁下垂和房颤的最新研究,推测心肌铁下垂过程中产生的脂质过氧化产物IsoLGs可能通过两种途径参与房颤的进展:(1) IsoLGs抑制心肌胶原降解,加重心肌纤维化;(2) isolg促进心肌淀粉样变性的发生,增加房颤的风险。因此,我们的目标是通过抑制isolg的产生或增强其清除过程来抑制心肌铁下垂,改善房颤患者的预后,从而预防房颤的进展。
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来源期刊
European Journal of Medical Research
European Journal of Medical Research 医学-医学:研究与实验
CiteScore
3.20
自引率
0.00%
发文量
247
审稿时长
>12 weeks
期刊介绍: European Journal of Medical Research publishes translational and clinical research of international interest across all medical disciplines, enabling clinicians and other researchers to learn about developments and innovations within these disciplines and across the boundaries between disciplines. The journal publishes high quality research and reviews and aims to ensure that the results of all well-conducted research are published, regardless of their outcome.
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