In vitro responses to known in vivo genotoxic agents in mouse germ cells

Khaled Habas1, Martin H Brinkworth1, Diana Anderson1

  • 1School of Medical Sciences, University of Bradford, Bradford, BD7 1DP, United Kingdom.

Insights

Genotoxic compounds like ENU, 6-MP, and MMS damage male germ cell DNA, impacting reproductive health. These chemicals alter DNA repair and apoptosis genes, potentially affecting fertility and offspring health.

Area of Science:

  • Environmental toxicology
  • Reproductive toxicology
  • Molecular toxicology

Background:

  • Genotoxic compounds pose risks to male germ cell genomic integrity.
  • DNA strand breaks in germ cells threaten spermatogenesis and reproductive success.
  • Understanding chemical impacts on germ cells is crucial for assessing health risks.

Purpose of the Study:

  • To investigate the genotoxicity of n-ethyl-n-nitrosourea (ENU), 6-mercaptopurine (6-MP), and methyl methanesulphonate (MMS) in male germ cells.
  • To assess the concentration-dependent effects of these compounds on DNA damage and gene expression.
  • To determine the differential sensitivity of spermatogonia, spermatocytes, and spermatids to these genotoxic agents.

Main Methods:

  • Utilized the Comet assay to measure DNA strand breaks in isolated germ cells.
  • Employed real-time PCR to analyze the mRNA expression of p53 and bcl-2.
  • Exposed cultured germ cells to varying concentrations of ENU, 6-MP, and MMS.

Main Results:

  • ENU, 6-MP, and MMS induced significant, concentration-dependent DNA damage in germ cells.
  • ENU primarily affected spermatogonia, 6-MP affected spermatocytes, and MMS affected spermatids.
  • Increased p53 mRNA and decreased bcl-2 mRNA levels were observed in response to the genotoxins.

Conclusions:

  • ENU, 6-MP, and MMS are confirmed genotoxic to male germ cells in vitro.
  • These compounds induce DNA damage and alter apoptosis-related gene expression.
  • Findings highlight potential risks to male fertility and offspring health from genotoxic exposures.