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NADPH 氧化酶在肥胖和代谢综合征发病机制中的作用:个体同工型和细胞生物学的贡献。

The Role of NADPH Oxidases in the Etiology of Obesity and Metabolic Syndrome: Contribution of Individual Isoforms and Cell Biology.

机构信息

Department of Pharmacology and Chemical Biology, University of Pittsburgh, Pittsburgh, Pennsylvania.

Pittsburgh Heart, Lung and Blood, Vascular Medicine Institute, University of Pittsburgh, Pittsburgh, Pennsylvania.

出版信息

Antioxid Redox Signal. 2019 Oct 1;31(10):687-709. doi: 10.1089/ars.2018.7674.

Abstract

Highly prevalent in Western cultures, obesity, metabolic syndrome, and diabetes increase the risk of cardiovascular morbidity and mortality and cost health care systems billions of dollars annually. At the cellular level, obesity, metabolic syndrome, and diabetes are associated with increased production of reactive oxygen species (ROS). Increased levels of ROS production in key organ systems such as adipose tissue, skeletal muscle, and the vasculature cause disruption of tissue homeostasis, leading to increased morbidity and risk of mortality. More specifically, growing evidence implicates the nicotinamide adenine dinucleotide phosphate oxidase (NOX) enzymes in these pathologies through impairment of insulin signaling, inflammation, and vascular dysfunction. The NOX family of enzymes is a major driver of redox signaling through its production of superoxide anion, hydrogen peroxide, and attendant downstream metabolites acting on redox-sensitive signaling molecules. The primary goal of this review is to highlight recent advances and survey our present understanding of cell-specific NOX enzyme contributions to metabolic diseases. However, due to the short half-lives of individual ROS and/or cellular defense systems, radii of ROS diffusion are commonly short, often restricting redox signaling and oxidant stress to localized events. Thus, special emphasis should be placed on cell type and subcellular location of NOX enzymes to better understand their role in the pathophysiology of metabolic diseases. We discuss the targeting of NOX enzymes as potential therapy and bring to light potential emerging areas of NOX research, microparticles and epigenetics, in the context of metabolic disease.

摘要

在西方文化中,肥胖、代谢综合征和糖尿病极为普遍,它们增加了心血管疾病发病率和死亡率的风险,并使医疗保健系统每年花费数十亿美元。在细胞水平上,肥胖、代谢综合征和糖尿病与活性氧(ROS)产生增加有关。在脂肪组织、骨骼肌和脉管系统等关键器官系统中,ROS 产生水平升高会导致组织稳态紊乱,从而导致发病率增加和死亡率风险增加。更具体地说,越来越多的证据表明,烟酰胺腺嘌呤二核苷酸磷酸氧化酶(NOX)酶通过损害胰岛素信号、炎症和血管功能障碍而参与这些病理过程。NOX 酶家族通过产生超氧阴离子、过氧化氢和作用于氧化还原敏感信号分子的伴随下游代谢物,是氧化还原信号的主要驱动因素。本综述的主要目的是强调最近的进展,并调查我们目前对细胞特异性 NOX 酶在代谢疾病中的作用的理解。然而,由于单个 ROS 和/或细胞防御系统的半衰期短,ROS 扩散的半径通常较短,通常将氧化还原信号和氧化剂应激限制在局部事件中。因此,应特别重视 NOX 酶的细胞类型和亚细胞定位,以更好地了解它们在代谢疾病病理生理学中的作用。我们讨论了将 NOX 酶作为潜在治疗靶点的问题,并阐明了代谢疾病背景下 NOX 研究的新兴领域——微粒体和表观遗传学的潜在领域。

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