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墨西哥城暴露于空气污染环境中的个体白细胞、口腔和鼻腔上皮细胞中的DNA损伤。

DNA damage in leukocytes and buccal and nasal epithelial cells of individuals exposed to air pollution in Mexico City.

作者信息

Valverde M, del Carmen López M, López I, Sánchez I, Fortoul T I, Ostrosky-Wegman P, Rojas E

机构信息

Departamento de Genética y Toxicología Ambiental, Institutto de Investigaciones Biomédicas, UNAM, México D.F., México.

出版信息

Environ Mol Mutagen. 1997;30(2):147-52.

PMID:9329639
Abstract

There is an increased interest in using biological markers to monitor individuals for possible exposure to environmental toxicants. Test systems which permit the sensitive detection of DNA damage and DNA repair are critically important in such studies. The single cell gel electrophoresis (SCG) assay is a rapid and a sensitive method for the evaluation of DNA damage at the single cell level, providing information on the occurrence of DNA single-strand breaks and alkali labile sites using alkaline conditions. In this study, the differences in the basal level of DNA damage between young adults from the south (exposed principally to high levels of ozone) and young adults from the north (exposed principally to hydrocarbons and particles) of Mexico City were investigated by the SCG assay using three different cell types (leukocytes and nasal and buccal epithelial cells). We found an increased DNA migration in blood leukocytes and nasal cells from individuals who live in the southern part of the city compared to those living in the northern part; however, no differences were observed for buccal epithelial cells. These results show the feasability of using the SCG assay to evaluate DNA damage in different tissues and its great potential for use in the monitoring of humans potentially exposed to genotoxic pollutants.

摘要

利用生物标志物监测个体是否可能接触环境毒物的兴趣与日俱增。在这类研究中,能够灵敏检测DNA损伤和DNA修复的检测系统至关重要。单细胞凝胶电泳(SCG)分析是一种在单细胞水平评估DNA损伤的快速且灵敏的方法,它在碱性条件下提供有关DNA单链断裂和碱不稳定位点发生情况的信息。在本研究中,使用三种不同细胞类型(白细胞、鼻上皮细胞和颊上皮细胞)的SCG分析,调查了墨西哥城南部(主要暴露于高浓度臭氧)的年轻人和北部(主要暴露于碳氢化合物和颗粒物)的年轻人之间DNA损伤基础水平的差异。我们发现,与居住在城市北部的人相比,居住在城市南部的人的血液白细胞和鼻细胞中的DNA迁移增加;然而,颊上皮细胞未观察到差异。这些结果表明,使用SCG分析评估不同组织中的DNA损伤是可行的,并且在监测可能接触遗传毒性污染物的人群方面具有巨大潜力。

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