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Smoke exposure associated with higher urinary benzene biomarker muconic acid (MUCA) in Golestan Cohort Study participants

  • Deepak Bhandari
  • , Yuyang Zhu
  • , Can Zhang
  • , Wanzhe Zhu
  • , Apostolos Alexandridis
  • , Arash Etemadi
  • , Neal D. Freedman
  • , Cindy Chang
  • , Christian C. Abnet
  • , Sanford M. Dawsey
  • , Maki Inoue-Choi
  • , Hossein Poustchi
  • , Akram Pourshams
  • , Paolo Boffetta
  • , Reza Malekzadeh
  • , Benjamin Blount
  • Centers for Disease Control and Prevention
  • United States Food and Drug Administration
  • National Institutes of Health
  • Tehran University of Medical Sciences

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

Background. Benzene is a known human carcinogen. Human exposure to benzene can be assessed by measuring trans, trans-muconic acid (MUCA) in urine. Golestan Province in northeastern Iran has been reported to have high incidence of esophageal cancer linked to the use of tobacco products. This manuscript evaluates the urinary MUCA concentrations among the participants of the Golestan Cohort Study (GCS). Methods. We analyzed MUCA concentration in 177 GCS participants’ urine samples and performed nonparametric pairwise multiple comparisons to determine statistically significant difference among six different product use groups. Mixed effects model was fitted on 22 participants who exclusively smoked cigarette and 51 participants who were classified as nonusers. The urinary MUCA data were collected at the baseline and approximately five years later, and intraclass correlation coefficient (ICC) was calculated from the model. Results. Compared with nonusers, tobacco smoking was associated with higher urinary MUCA concentrations. Based on the nonparametric test of pairwise multiple comparisons, MUCA concentrations among participants who smoked combusted tobacco products were statistically significantly higher compared to nonusers. Urinary MUCA collected five years apart from the same individuals showed moderate reliability (ICC = 0.41), which was expected given the relatively short half-life (∼6 h) of MUCA. Conclusion. Our study revealed that tobacco smoke was positively associated with increased levels of urinary MUCA concentration, indicating that it is a significant source of benzene exposure among GCS participants.

Original languageEnglish
JournalBiomarkers
DOIs
StateAccepted/In press - 2023

Keywords

  • benzene exposure
  • Golestan Cohort Study
  • tobacco smoke exposure
  • trans,trans-muconic acid

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