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Updated: Mar 7, 2026

Transgenic Rodent Assay for Quantifying Male Germ Cell Mutant Frequency
Published on: August 6, 2014
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.
Abstract:
Genotoxic compounds have induced DNA damage in male germ cells and have been associated with adverse clinical outcomes including enhanced risks for maternal, paternal and offspring health. DNA strand breaks represent a great threat to the genomic integrity of germ cells. Such integrity is essential to maintain spermatogenesis and prevent reproduction failure. The Comet assay results revealed that the incubation of isolated germ cells with n-ethyl-n-nitrosourea (ENU), 6-mercaptopurine (6-MP) and methyl methanesulphonate (MMS) led to increase in length of Olive tail moment and % tail DNA when compared with the untreated control cells and these effects were concentration-dependent. All compounds were significantly genotoxic in cultured germ cells. Exposure of isolated germ cells to ENU produced the highest concentration-related increase in both DNA damage and gene expression changes in spermatogonia. Spermatocytes were most sensitive to 6-MP, with DNA damage and gene expression changes while spermatids were particularly susceptible to MMS. Real-time PCR results showed that the mRNA level expression of p53 increased and bcl-2 decreased significantly with the increasing ENU, 6-MP and MMS concentrations in spermatogonia, spermatocytes and spermatids respectively for 24 hr. Both are gene targets for DNA damage response and apoptosis. These observations may help explain the cell alterations caused by ENU, 6-MP and MMS in spermatogonia, spermatocytes and spermatids. Taken together, ENU, 6-MP and MMS induced DNA damage and decreased apoptosis associated gene expression in the germ cells in vitro. Environ. Mol. Mutagen. 58:99-107, 2017. © 2017 Wiley Periodicals, Inc.
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.
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