Urinary microRNAs as potential biomarkers of pesticide exposure

Brittany A Weldon1, Sara Pacheco Shubin1, Marissa N Smith1

  • 1Institute for Risk Analysis and Risk Communication, University of Washington, Seattle, WA, United States; Department of Environmental and Occupational Health Sciences, University of Washington, Seattle, WA, United States.

Insights

Urinary microRNAs (miRNAs) show promise as biomarkers for pesticide exposure. Farmworkers exhibited distinct miRNA profiles, with specific miRNAs correlating with organophosphate pesticide metabolites, indicating early biological responses.

Area of Science:

  • Environmental epigenetics
  • Molecular toxicology
  • Biomarker discovery

Background:

  • MicroRNAs (miRNAs) are stable, long-lived molecules with potential as biomarkers for disease and exposure.
  • Urinary miRNAs are established clinical markers but underutilized in non-clinical exposure assessments.
  • Investigating urinary miRNAs for pesticide exposure in agricultural settings is crucial.

Purpose of the Study:

  • To explore urinary miRNAs as biomarkers for pesticide exposure and early biological response in farmworker families.
  • To characterize miRNA profiles in urine samples from farmworker and non-farmworker pairs across agricultural seasons.
  • To identify specific miRNAs associated with farmworker occupation and pesticide metabolite levels.

Main Methods:

  • Urine samples from 27 parent/child farmworker/non-farmworker pairs were collected across two agricultural seasons.
  • MicroRNAs were isolated and identified using PCR arrays.
  • Statistical analyses, including principal components and hierarchical clustering, were used to compare miRNA profiles.

Main Results:

  • 77% of 384 investigated miRNAs were detectable in urine samples.
  • Significant differences in miRNA profiles were observed between farmworkers and non-farmworkers, and between seasons.
  • Six miRNAs were associated with farmworker status, and five showed a dose-response relationship with organophosphate pesticide metabolites.

Conclusions:

  • Urinary miRNAs can serve as novel biomarkers for pesticide exposure in agricultural workers.
  • MiRNA profiling in urine offers a non-invasive method to detect early biological responses to environmental toxins.
  • Further research can validate these findings for public health monitoring and risk assessment.

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