Urinary 8-Hydroxy-Deoxyguanosine as a Biomarker of Oxidative DNA Damage in Employees of Subway System

Exposure to air pollutants, steel dust or other occupational and environmental hazards as oxidative stress have adverse effects on subway workers' health. Oxidative stress generates an excessive amount of reactive oxygen species (ROS) and Oxygen Free Radicals during their work time in the tunne...

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Main Authors: Ramin Mehrdad, Sara Aghdaei, Gholamreza Pouryaghoub
Format: Article
Language:English
Published: Tehran University of Medical Sciences 2015-05-01
Series:Acta Medica Iranica
Subjects:
Online Access:https://acta.tums.ac.ir/index.php/acta/article/view/4890
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author Ramin Mehrdad
Sara Aghdaei
Gholamreza Pouryaghoub
author_facet Ramin Mehrdad
Sara Aghdaei
Gholamreza Pouryaghoub
author_sort Ramin Mehrdad
collection DOAJ
description Exposure to air pollutants, steel dust or other occupational and environmental hazards as oxidative stress have adverse effects on subway workers' health. Oxidative stress generates an excessive amount of reactive oxygen species (ROS) and Oxygen Free Radicals during their work time in the tunnels. Once DNA is repaired, Urinary 8-hydroxy-deoxyguanosine (8-OHdG) is excreted in the urine. Therefore, urinary level of 8-OHdG can reflect the extent of oxidative DNA damage. The aim of this study was to document the oxidative stress caused by exposure to these hazards by measuring 8-OHdG in workers urine. We collected urine samples of 81 male subway workers after their working shift. The concentration of urinary 8-OHdG was measured by ELISA method. We used linear regression analysis to compare the level of urinary 8-OHdG as a biomarker of oxidative stress between workers in tunnels and other staff. The mean concentration of urinary 8-OHdG for workers in the tunnel was 58.05 (SD=28.83) ng/mg creatinine and for another staff was 54.16 (SD =26.98) ng/mg creatinine.  After adjustment for age, smoking, driving and a second job in a linear regression model, the concentration of 8-OHdG for the exposed group was significantly higher than unexposed group (P=0.038). These findings confirm that the concentration of urinary 8-OHdG for workers who work in tunnels was significantly higher than the other staff. Additional investigations should be performed to understand that which ones of occupational exposures are more important to cause oxidative stress.
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spelling doaj.art-628d80c3bbb943f88ce3029ab4047f382022-12-21T18:10:03ZengTehran University of Medical SciencesActa Medica Iranica0044-60251735-96942015-05-015354843Urinary 8-Hydroxy-Deoxyguanosine as a Biomarker of Oxidative DNA Damage in Employees of Subway SystemRamin Mehrdad0Sara Aghdaei1Gholamreza Pouryaghoub2Center for Research on Occupational Diseases, Tehran University of Medical Sciences, Tehran, Iran.Center for Research on Occupational Diseases, Tehran University of Medical Sciences, Tehran, Iran.Center for Research on Occupational Diseases, Tehran University of Medical Sciences, Tehran, Iran.Exposure to air pollutants, steel dust or other occupational and environmental hazards as oxidative stress have adverse effects on subway workers' health. Oxidative stress generates an excessive amount of reactive oxygen species (ROS) and Oxygen Free Radicals during their work time in the tunnels. Once DNA is repaired, Urinary 8-hydroxy-deoxyguanosine (8-OHdG) is excreted in the urine. Therefore, urinary level of 8-OHdG can reflect the extent of oxidative DNA damage. The aim of this study was to document the oxidative stress caused by exposure to these hazards by measuring 8-OHdG in workers urine. We collected urine samples of 81 male subway workers after their working shift. The concentration of urinary 8-OHdG was measured by ELISA method. We used linear regression analysis to compare the level of urinary 8-OHdG as a biomarker of oxidative stress between workers in tunnels and other staff. The mean concentration of urinary 8-OHdG for workers in the tunnel was 58.05 (SD=28.83) ng/mg creatinine and for another staff was 54.16 (SD =26.98) ng/mg creatinine.  After adjustment for age, smoking, driving and a second job in a linear regression model, the concentration of 8-OHdG for the exposed group was significantly higher than unexposed group (P=0.038). These findings confirm that the concentration of urinary 8-OHdG for workers who work in tunnels was significantly higher than the other staff. Additional investigations should be performed to understand that which ones of occupational exposures are more important to cause oxidative stress.https://acta.tums.ac.ir/index.php/acta/article/view/4890DeoxyguanosineDNA damageOccupational exposureSubway system
spellingShingle Ramin Mehrdad
Sara Aghdaei
Gholamreza Pouryaghoub
Urinary 8-Hydroxy-Deoxyguanosine as a Biomarker of Oxidative DNA Damage in Employees of Subway System
Acta Medica Iranica
Deoxyguanosine
DNA damage
Occupational exposure
Subway system
title Urinary 8-Hydroxy-Deoxyguanosine as a Biomarker of Oxidative DNA Damage in Employees of Subway System
title_full Urinary 8-Hydroxy-Deoxyguanosine as a Biomarker of Oxidative DNA Damage in Employees of Subway System
title_fullStr Urinary 8-Hydroxy-Deoxyguanosine as a Biomarker of Oxidative DNA Damage in Employees of Subway System
title_full_unstemmed Urinary 8-Hydroxy-Deoxyguanosine as a Biomarker of Oxidative DNA Damage in Employees of Subway System
title_short Urinary 8-Hydroxy-Deoxyguanosine as a Biomarker of Oxidative DNA Damage in Employees of Subway System
title_sort urinary 8 hydroxy deoxyguanosine as a biomarker of oxidative dna damage in employees of subway system
topic Deoxyguanosine
DNA damage
Occupational exposure
Subway system
url https://acta.tums.ac.ir/index.php/acta/article/view/4890
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