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Leydig cell number and sperm production decrease induced by chronic ametryn exposure: a negative impact on animal
T A Dantas1, G Cancian, D N R Neodini
1Programa de Pós-Graduação em Ciências Biomédicas, Centro Universitário Hermínio Ometto UNIARARAS, Avenida Dr. Maximiliano Barutto, n° 500, Jd. Universitário, Araras, SP, CEP 13607-339, Brazil, pharma_tan@yahoo.com.br.
This study found that the herbicide ametryn negatively impacts male rat testes, reducing sperm production and Leydig cell numbers. Evidence suggests ametryn exposure causes oxidative stress, potentially harming reproductive health.
Area of Science:
- Toxicology
- Reproductive Biology
- Environmental Science
Background:
- Ametryn is a widely used herbicide for weed control.
- Limited toxicological data exists for ametryn, particularly regarding chronic exposure and reproductive effects.
- Previous assumptions suggested low acute and chronic toxicity for ametryn.
Purpose of the Study:
- To investigate the reproductive toxicity of ametryn in male Wistar rats.
- To evaluate the effects of ametryn exposure on testicular parameters and oxidative stress markers.
Main Methods:
- Thirty-six male Wistar rats were divided into control and two ametryn-exposed groups (15 and 30 mg/kg/day).
- Exposure lasted for 56 days.
- Testicular analysis included sperm counts, Leydig cell counts, and assessment of oxidative stress biomarkers (lipid peroxidation, catalase, superoxide dismutase, and sulfhydryl groups).
Main Results:
- Ametryn exposure significantly decreased sperm number per testis and daily sperm production in both treated groups.
- Leydig cell numbers were reduced in ametryn-exposed rats.
- Increased lipid peroxidation and decreased catalase and superoxide dismutase activities were observed, indicating oxidative stress.
- Reduced sulfhydryl groups in proteins suggested cellular damage due to oxidative stress.
Conclusions:
- Ametryn exerts a negative influence on the male rat testes.
- The herbicide can compromise reproductive performance and survival due to induced oxidative stress.
- Further research is warranted to understand the long-term reproductive health implications of ametryn exposure.
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