Center for Metabolic Disease Research, Temple University School of Medicine, Philadelphia, PA, 19140, USA.
Cardiovascular Medicine Department, Sun Yat-sen Memorial Hospital, China.
Redox Biol. 2019 Sep;26:101284. doi: 10.1016/j.redox.2019.101284. Epub 2019 Aug 2.
Accumulated evidence strongly indicates that oxidative stress, characterized by an imbalance between reactive oxygen species (ROS) production and antioxidants in favor of oxidants, plays an important role in disease pathogenesis. However, ROS can act as signaling molecules and fulfill essential physiological functions at basal levels. Each ROS would be different in the extent to stimulate and contribute to different pathophysiological effects. Importantly, multiple ROS generators can be activated either concomitantly or sequentially by relevant signaling molecules for redox biological functions. Here, we summarized the current knowledge related to chemical and biochemical features of primary ROS species and corresponding antioxidants. Metabolic pathways of five major ROS generators and five ROS clearance systems were described, including their ROS products, specific ROS enriched tissue, cell and organelle, and relevant functional implications. We provided an overview of ROS generation and induction at different levels of metabolism. We classified 11 ROS species into three types based on their reactivity and target selectivity and presented ROS homeostasis and functional implications in pathological and physiological status. This article intensively reviewed and refined biochemical basis, metabolic signaling and regulation, functional insights, and provided guidance for the identification of novel therapeutic targets.
大量证据表明,氧化应激在疾病发病机制中起着重要作用,其特征是活性氧(ROS)的产生与抗氧化剂之间失衡,有利于氧化剂。然而,ROS 可以作为信号分子在基础水平上发挥重要的生理功能。每种 ROS 在刺激程度和对不同病理生理效应的贡献方面都有所不同。重要的是,多种 ROS 生成剂可以通过相关信号分子同时或顺序激活,以实现氧化还原生物学功能。在这里,我们总结了与初级 ROS 种类和相应抗氧化剂的化学和生化特性相关的现有知识。描述了五种主要 ROS 生成剂和五种 ROS 清除系统的代谢途径,包括它们的 ROS 产物、特定的 ROS 富集组织、细胞和细胞器,以及相关的功能意义。我们概述了在不同代谢水平的 ROS 生成和诱导。我们根据 ROS 的反应性和靶选择性将 11 种 ROS 分为三类,并提出了 ROS 动态平衡及其在病理和生理状态下的功能意义。本文深入综述了氧化应激的生化基础、代谢信号和调控、功能见解,并为鉴定新的治疗靶点提供了指导。