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内皮活性氧:心血管健康与疾病中的关键因素

Endothelial Reactive Oxygen Species: Key Players in Cardiovascular Health and Disease.

作者信息

Craige Siobhan M, Kaur Gaganpreet, Bond Jacob M, Caliz Amada D, Kant Shashi, Keaney John F

机构信息

Department of Human Nutrition, Foods, and Exercise, Virginia Tech, Blacksburg, Virginia, USA.

Division of Cardiovascular Medicine, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts, USA.

出版信息

Antioxid Redox Signal. 2025 Jun;42(16-18):905-932. doi: 10.1089/ars.2024.0706. Epub 2024 Sep 30.

DOI:10.1089/ars.2024.0706
PMID:39213161
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12183504/
Abstract

Endothelial cells (ECs) line the entire vasculature system and serve as both barriers and facilitators of intra- and interorgan communication. Positioned to rapidly sense internal and external stressors, ECs dynamically adjust their functionality. Endothelial dysfunction occurs when the ability of ECs to react to stressors is impaired, which precedes many cardiovascular diseases (CVDs). While EC reactive oxygen species (ROS) have historically been implicated as mediators of endothelial dysfunction, more recent studies highlight the central role of ROS in physiological endothelial signaling. New evidence has uncovered that EC ROS are fundamental in determining how ECs interact with their environment and respond to stress. EC ROS levels are mediated by external factors such as diet and pathogens, as well as inherent characteristics, including sex and location. Changes in EC ROS impact EC function, leading to changes in metabolism, cell communication, and potentially disrupted signaling in CVDs. Current endothelial biology concepts integrate the dual nature of ROS, emphasizing the importance of EC ROS in physiological stress adaptation and their contribution to CVDs. Understanding the discrete, localized signaling of EC ROS will be critical in preventing adverse cardiovascular outcomes. Exploring how the EC ROS environment alters EC function and cross-cellular communication is critical. Considering the inherent heterogeneity among EC populations and understanding how EC ROS contribute to this diversity and the role of sexual dimorphism in the EC ROS environment will be fundamental for developing new effective cardiovascular treatment strategies. 42, 905-932.

摘要

内皮细胞(ECs)排列在整个脉管系统中,既是器官内和器官间通讯的屏障,也是促进因素。内皮细胞能够快速感知内部和外部应激源,并动态调整其功能。当内皮细胞对应激源的反应能力受损时,就会发生内皮功能障碍,而这是许多心血管疾病(CVDs)的先兆。虽然内皮细胞活性氧(ROS)在历史上一直被认为是内皮功能障碍的介质,但最近的研究强调了ROS在生理性内皮信号传导中的核心作用。新证据表明,内皮细胞ROS在决定内皮细胞如何与周围环境相互作用以及对应激作出反应方面至关重要。内皮细胞ROS水平由饮食和病原体等外部因素以及包括性别和位置在内的固有特征介导。内皮细胞ROS的变化会影响内皮细胞功能,导致新陈代谢、细胞通讯发生变化,并可能破坏心血管疾病中的信号传导。当前的内皮生物学概念整合了ROS的双重性质,强调了内皮细胞ROS在生理应激适应中的重要性及其对心血管疾病的影响。了解内皮细胞ROS的离散、局部信号传导对于预防不良心血管结局至关重要。探索内皮细胞ROS环境如何改变内皮细胞功能和跨细胞通讯至关重要。考虑到内皮细胞群体之间固有的异质性,了解内皮细胞ROS如何促成这种多样性以及性别差异在内皮细胞ROS环境中的作用,对于制定新的有效心血管治疗策略至关重要。42, 905 - 932。