Zhang Chuxin, Lan Xin, Wang Qingguo, Zheng Yuxiao, Cheng Jialin, Han Jinhua, Li Changxiang, Cheng Fafeng, Wang Xueqian
Beijing University of Chinese Medicine, Beijing, 100029, China.
Beijing University of Chinese Medicine, Beijing, 100029, China.
Redox Biol. 2025 May;82:103622. doi: 10.1016/j.redox.2025.103622. Epub 2025 Mar 27.
Stroke is known for its high disability and mortality rates. Ischemic stroke (IS), the most prevalent form, imposes a considerable burden on affected individuals. Nevertheless, existing treatment modalities are hindered by limitations, including narrow therapeutic windows, substantial adverse effects, and suboptimal neurological recovery. Clarifying the pathological mechanism of IS is a prerequisite for developing new therapeutic strategies. In this context, the functional disruption of mitochondria, the endoplasmic reticulum (ER), and the crosstalk mechanisms between them have garnered increasing attention for their contributory roles in the progression of IS. Therefore, this review provides a comprehensive summary of the current pathomechanisms associated with the involvement of the ER and mitochondria in IS, emphasising Ca destabilization homeostasis, ER stress, oxidative stress, disordered mitochondrial quality control, and mitochondrial transfer. Additionally, this article highlights the functional interaction between the ER and mitochondria, as well as the mitochondrial-ER contacts (MERCs) that structurally connect mitochondria and the ER, aiming to provide ideas and references for the research and treatment of IS.
中风以其高致残率和高死亡率而闻名。缺血性中风(IS)是最常见的形式,给受影响的个体带来了相当大的负担。然而,现有的治疗方法受到诸多限制,包括治疗窗口狭窄、严重的不良反应以及不理想的神经功能恢复。阐明缺血性中风的病理机制是开发新治疗策略的先决条件。在这种背景下,线粒体、内质网(ER)的功能破坏以及它们之间的相互作用机制因其在缺血性中风进展中的作用而受到越来越多的关注。因此,本综述全面总结了目前与内质网和线粒体参与缺血性中风相关的病理机制,重点强调钙稳态失衡、内质网应激、氧化应激、线粒体质量控制紊乱以及线粒体转移。此外,本文还突出了内质网与线粒体之间的功能相互作用,以及在结构上连接线粒体和内质网的线粒体 - 内质网接触点(MERC),旨在为缺血性中风的研究和治疗提供思路和参考。