Related Experiment Video
Updated: Apr 27, 2026

Rapid and Efficient Spatiotemporal Monitoring of Normal and Aberrant Cytosine Methylation within Intact Zebrafish Embryos
Published on: August 18, 2022
Methamidophos alters sperm function and DNA at different stages of spermatogenesis in mice
Mayrut Urióstegui-Acosta1, Isabel Hernández-Ochoa1, Manuel Sánchez-Gutiérrez2
1Departamento de Toxicología, CINVESTAV-IPN, D.F., Mexico.
Abstract:
Methamidophos (MET) is a highly toxic organophosphate (OP) pesticide that is widely used in developing countries. MET has male reproductive effects, including decreased fertility. We evaluated MET effects on sperm quality, fertilization and DNA integrity, exploring the sensitivity of different stages of spermatogenesis. Adult male mice received MET (3.75 or 5mg/kg-bw/ip/day/4 days) and were euthanized 1, 28 or 45 days post-treatment (dpt) to evaluate MET's effects on epididymal maturation, meiosis or mitosis, respectively. Spermatozoa were obtained from the cauda epididymis-vas deferens and were evaluated for sperm quality, acrosome reaction (AR; Coomassie staining), mitochondrial membrane potential (by JC-1), DNA damage (comet assay), oxidative damage (malondialdehyde (MDA) production), in vitro fertilization and protein phosphorylation (immunodetection), and erythrocyte acetylcholinesterase (AChE) activity. At 1-dpt, MET inhibited AChE (43-57%) and increased abnormal cells (6%). While at 28- and 45-dpt, sperm motility and viability were significantly reduced with an increasing MET dose, and abnormal morphology increased at 5mg/kg/day/4 days. MDA and mitochondrial activity were not affected at any dose or time. DNA damage (OTM and %DNA) was observed at 5mg/kg/day/4 days in a time-dependent manner, whereas both parameters were altered in cells from mice exposed to 3.75 mg/kg/day/4 days only at 28-dpt. Depending on the time of collection, initial-, spontaneous- and induced-AR were altered at 5mg/kg/day/4 days, and the fertilization capacity also decreased. Sperm phosphorylation (at serine and tyrosine residues) was observed at all time points. Data suggest that meiosis and mitosis are the more sensitive stages of spermatogenesis for MET reproductive toxicity compared to epididymal maturation.
Insights
Methamidophos (MET) pesticide exposure significantly harms male fertility by damaging sperm DNA and reducing fertilization capacity. Meiosis and mitosis stages are most sensitive to MET
Area of Science:
- Reproductive Toxicology
- Environmental Health
- Spermatogenesis Research
Background:
- Methamidophos (MET) is a widely used organophosphate pesticide with known male reproductive toxicity.
- Previous studies indicate MET can decrease fertility, but the specific effects on different spermatogenesis stages require further investigation.
Purpose of the Study:
- To evaluate the impact of MET on sperm quality, DNA integrity, and fertilization capacity in mice.
- To determine the sensitivity of different spermatogenesis stages (epididymal maturation, meiosis, mitosis) to MET exposure.
Main Methods:
- Adult male mice were administered MET (3.75 or 5 mg/kg) for 4 days.
- Sperm were collected at 1, 28, and 45 days post-treatment to assess sperm quality, DNA damage (comet assay), acrosome reaction, mitochondrial potential, and in vitro fertilization.
- Erythrocyte acetylcholinesterase (AChE) activity was measured to confirm MET exposure.
Main Results:
- MET inhibited AChE activity and increased sperm abnormalities at 1 day post-treatment.
- Sperm motility, viability, and fertilization capacity were significantly reduced at 28 and 45 days post-treatment, with dose-dependent effects.
- DNA damage was observed in a time-dependent manner, particularly at the higher MET dose.
- Meiosis and mitosis stages showed greater sensitivity to MET toxicity compared to epididymal maturation.
Conclusions:
- Methamidophos exposure induces significant male reproductive toxicity, affecting sperm DNA integrity and fertilization.
- The study identifies meiosis and mitosis as the most vulnerable stages of spermatogenesis to MET-induced reproductive damage.
- Findings highlight the critical need for caution in using MET, especially in regions with high agricultural reliance.
Related Concept Videos
Spermatogenesis
In-vitro Mutagenesis

