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1. Temephos Decreases Sperm Quality and Fertilization Rate and Is Metabolized in Rat Reproductive Tissues at Low-Dose Exposure.

2. Methyl parathion causes genetic damage in sperm and disrupts the permeability of the blood-testis barrier by an oxidant mechanism in mice.

3. Low concentrations of lead decrease the sperm fertilization ability by altering the acrosome reaction in mice.

4. Epigenetic modulation of Nrf2 and Ogg1 gene expression in testicular germ cells by methyl parathion exposure.

5. Increased methylation of repetitive elements and DNA repair genes is associated with higher DNA oxidation in children in an urbanized, industrial environment.

6. Methamidophos alters sperm function and DNA at different stages of spermatogenesis in mice.

7. Methyl-parathion decreases sperm function and fertilization capacity after targeting spermatocytes and maturing spermatozoa.

8. PON1Q192R genetic polymorphism modifies organophosphorous pesticide effects on semen quality and DNA integrity in agricultural workers from southern Mexico.

9. Genetic damage caused by methyl-parathion in mouse spermatozoa is related to oxidative stress.

10. Spermatozoa nucleus takes up lead during the epididymal maturation altering chromatin condensation.

11. Genetic polymorphisms and activity of PON1 in a Mexican population.

12. Diazinon alters sperm chromatin structure in mice by phosphorylating nuclear protamines.

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