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单线态氧与系统性红斑狼疮:简要综述

Singlet oxygen species and systemic lupus erythematosus: a brief review.

作者信息

Ahmad Rizwan, Ahsan Haseeb

机构信息

a College of Medicine , Imam Abdulrahman bin Faisal University , Dammam , Saudi Arabia.

b Department of Biochemistry, Faculty of Dentistry , Jamia Millia Islamia , New Delhi , India.

出版信息

J Immunoassay Immunochem. 2019;40(4):343-349. doi: 10.1080/15321819.2019.1616555. Epub 2019 May 22.

Abstract

Reactive oxygen species (ROS) are implicated in inflammatory, autoimmune, and neurodegenerative diseases. The activation, proliferation, and apoptosis of immune cells are dependent on the controlled production and elimination of ROS. However, under chronic inflammatory conditions, large amounts of ROS generated are a major cause of many human diseases. The electronically excited molecular oxygen species known as singlet oxygen (O) is a form of ROS and is one of the major cytotoxic species in eukaryotic cells. ROS are known to cause DNA damage leading to strand breaks, base damage, and conformational changes. The O, being one of the most potent ROS, is generated by photoexcitation or by chemiexcitation and is known to selectively react with the deoxyguanosine moiety in DNA. The biological consequences of O-induced damage causes loss of transforming activity as well as mutagenicity and genotoxicity and may lead to the formation of neo-epitopes in native DNA and generation of pathogenic anti-DNA antibodies. The excessive production of ROS may be one of the factors responsible for the induction of autoimmune response in diseases such as cancer and systemic lupus erythematosus. Singlet oxygen: O; Superoxide anion: O; Hydroxyl radical: OH; Hydrogen peroxide: HO.

摘要

活性氧(ROS)与炎症性疾病、自身免疫性疾病和神经退行性疾病有关。免疫细胞的激活、增殖和凋亡取决于ROS的可控产生和清除。然而,在慢性炎症条件下,大量产生的ROS是许多人类疾病的主要原因。被称为单线态氧(O)的电子激发态分子氧是ROS的一种形式,是真核细胞中的主要细胞毒性物质之一。已知ROS会导致DNA损伤,导致链断裂、碱基损伤和构象变化。作为最有效的ROS之一,O通过光激发或化学激发产生,已知其能与DNA中的脱氧鸟苷部分发生选择性反应。O诱导损伤的生物学后果会导致转化活性丧失以及致突变性和基因毒性,并可能导致天然DNA中新表位的形成和致病性抗DNA抗体的产生。ROS的过量产生可能是导致癌症和系统性红斑狼疮等疾病中自身免疫反应诱导的因素之一。单线态氧:O;超氧阴离子:O;羟基自由基:OH;过氧化氢:HO。

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