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8-羟基-2'-脱氧鸟苷(8-OHdG)作为职业暴露于纳米材料诱导的氧化 DNA 损伤的生物标志物:系统评价。

8-Hydroxy-2'-deoxyguanosine (8-OHdG) as a biomarker of oxidative DNA damage induced by occupational exposure to nanomaterials: a systematic review.

机构信息

Department of Occupational Health Engineering, Faculty of public health, Iran University of Medical Sciences, Tehran, Iran.

Department of Occupational Health Engineering, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran.

出版信息

Nanotoxicology. 2021 Aug;15(6):850-864. doi: 10.1080/17435390.2021.1936254. Epub 2021 Jun 25.

Abstract

In nuclear and mitochondrial DNA, 8-hydroxy-2-deoxyguanosine (8-OHdG) is one of the predominant forms of reactive oxygen species (ROSs) lesions, which commonly used as a biomarker for oxidative stress. Studies showed that the different nanomaterials can induce toxicity by ROSs in human body. So, this study is going to review the studies about oxidative DNA damage caused by occupational exposure to nanomaterials, using 8-OHdG biomarker.Systematic review was managed based on Cochrane systematic review guideline. Literature search was conducted in scientific databases with the main terms of "biomarkers," "biological markers," combined with "occupational exposure" and "nanomaterials." All papers in the field of occupational exposure to nanomaterials until 2020 December were included. To evaluate the quality and bias of studies, GRADE method (Grading of Recommendations, Assessment, Development, and Evaluation) was used.Two hundred twenty-six studies were primarily achieved. By considering the inclusion criteria, overall 8 articles were selected. The majority of the studies were classified as the moderate quality studies (six studies). Also, the study-level bias was critical. This review shows that there is a significant relationship between job title and amount of produced nanomaterials and the existence of 8-OHdG. Also, the levels of 8-OHdG can be measured in urine, blood, and inhalation samples by instrumental procedures.Oxidative damages are an important threat for workers exposed to nanomaterial. Blood and EBC 8-OHdG level can be introduced as a biomarker for metal nanomaterials, but urinary 8-OHdG needs to be taken with caution. So, it is recommended that evaluation not be solely based on one biomarker.

摘要

在核 DNA 和线粒体 DNA 中,8-羟基-2-脱氧鸟苷(8-OHdG)是活性氧(ROS)损伤的主要形式之一,通常被用作氧化应激的生物标志物。研究表明,不同的纳米材料可以通过 ROS 诱导人体毒性。因此,本研究旨在综述职业暴露于纳米材料引起的氧化 DNA 损伤的研究,使用 8-OHdG 生物标志物。系统评价是根据 Cochrane 系统评价指南进行的。在科学数据库中使用“生物标志物”、“生物标记物”的主要术语进行文献检索,并结合“职业暴露”和“纳米材料”。纳入职业暴露于纳米材料领域的所有论文均截止至 2020 年 12 月。为了评估研究的质量和偏倚,使用 GRADE 方法(推荐分级、评估、发展和评价)。初步获得了 226 项研究。考虑到纳入标准,共选择了 8 篇文章。大多数研究被归类为中等质量研究(6 项研究)。此外,研究水平的偏倚也很关键。本综述表明,职业头衔和纳米材料的产量与 8-OHdG 的存在之间存在显著关系。此外,仪器程序可以测量尿液、血液和吸入样本中的 8-OHdG 水平。氧化损伤是暴露于纳米材料的工人面临的一个重要威胁。血液和 EBC 8-OHdG 水平可以作为金属纳米材料的生物标志物,但尿液 8-OHdG 需要谨慎对待。因此,建议评价不应仅基于一个生物标志物。

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