Induction of dominant lethal mutations by Ascaris trypsin inhibitor in male mice

Joanna Blaszkowska1

  • 1Department of Biology and Medical Parasitology, Chair of Biology and Medical Genetics, Medical University of Lodz, Pl. Hallera 1, 90-647 Lodz, Poland. biolparazyt@poczta.onet.pl

Insights

Ascaris suum trypsin inhibitor (ATI) caused dominant lethal mutations in male mice germ cells. Spermatids were the most sensitive stage, suggesting ATI may reduce host reproductive success.

Area of Science:

  • Parasitology
  • Toxicology
  • Reproductive Biology

Background:

  • Ascaris suum is a gastrointestinal nematode parasite.
  • Trypsin inhibitors (ATI) are compounds produced by parasites.
  • The reproductive toxicity of ATI in host organisms is not well understood.

Purpose of the Study:

  • To investigate the potential of Ascaris suum trypsin inhibitor (ATI) to induce dominant lethal mutations in male mice.
  • To analyze the effects of ATI on different germ cell development stages.
  • To assess the impact of ATI on male mouse reproductive success.

Main Methods:

  • BALB/c male mice received single intraperitoneal injections of ATI (50, 100, or 250 mg/kg body weight) or phosphate-buffered saline (PBS).
  • Males were mated with untreated females at timed intervals post-injection to assess germ cell stage sensitivity.
  • Uteri were examined for preimplantation and postimplantation losses to determine dominant lethal effects.

Main Results:

  • ATI exposure did not impair male mating activity.
  • Significant increases in preimplantation loss were observed at post-injection weeks 1 and 3 for higher ATI doses.
  • Statistically significant increases in postimplantation loss and dominant lethal effects occurred across all doses, particularly affecting spermatozoa at higher doses.

Conclusions:

  • Ascaris suum trypsin inhibitor (ATI) induces dominant lethal mutations in male mouse germ cells, primarily at postmeiotic stages.
  • Spermatids appear to be the most sensitive germ cell stage to ATI's effects.
  • These findings suggest ATI may contribute to spermatogenesis disturbances and reduced host reproductive success.