Metam sodium reduces viability and infectivity of Eimeria oocysts

R H Fetterer1, M C Jenkins, K B Miska

  • 1Animal Parasitic Diseases Laboratory, Animal and Natural Resources Institute, Henry A Wallace, Beltsville Agricultural Research Center, Beltsville, Maryland 20705, USA. Raymond.Fetterer@ars.usda.gov

Insights

Metam sodium (MS) effectively inhibits the development and infectivity of avian coccidia oocysts. This soil pesticide can reduce coccidial contamination in poultry litter, preventing disease transmission.

Area of Science:

  • Veterinary Parasitology
  • Poultry Science
  • Soil Microbiology

Background:

  • Avian coccidiosis, caused by Eimeria species, poses a significant threat to poultry health and industry.
  • Poultry litter can harbor infectious oocysts, facilitating disease transmission.
  • Chemical sterilization of poultry litter is a potential strategy to control coccidia.

Purpose of the Study:

  • To investigate the effect of metam sodium (MS) on the viability and infectivity of Eimeria oocysts.
  • To assess MS efficacy in preventing coccidial sporulation in poultry litter.

Main Methods:

  • Isolated Eimeria oocysts (E. tenella, E. maxima, E. acervulina) were exposed to varying concentrations of aqueous MS.
  • Oocyst infectivity was evaluated by inoculating treated oocysts into chickens and monitoring coccidiosis parameters.
  • Poultry litter samples were treated with MS, and oocyst sporulation was assessed.

Main Results:

  • MS inhibited oocyst development in a dose-dependent manner (IC50: 8-14 µg/ml).
  • MS significantly reduced oocyst infectivity, with maximum efficacy at 300 µg/ml.
  • Treatment of poultry litter with MS prevented oocyst sporulation.

Conclusions:

  • Metam sodium demonstrates potent anti-coccidial activity against Eimeria species.
  • MS is a viable option for reducing coccidial contamination in poultry litter.
  • MS application can mitigate the risk of avian coccidiosis transmission.