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.

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.