Pyrethroids are widely used for domestic and agricultural purposes and their use is increasing, especially in developing countries. Uncontrolled use of these insecticides resulted in their entry into the food chain thereby causing toxicity to different organ systems. Allethrin is one of the widely used pyrethroids, but its toxicological effects are underreported when compared to other pyrethroids. Further, its effects on the male reproductive tract remain uncharacterized. In this study, its toxicity on the male reproductive tract was evaluated by administering 25-150 mg/kg body weight allethrin to adult rats for 60 days. The mRNA expression of factors that are important in spermatogenesis (Scf, c-Kit, Hsf2, Ovol1, Brdt, Kdm3A, Ybx-2, and Grth) and steroidogenesis (StAR, 3β-HSD, 17β-HSD) was significantly downregulated. Decreased levels of testosterone, reduced sperm count and daily sperm production was also observed due to allethrin toxicity. However, sperm quality parameters assessed by computer-assisted sperm analyzer were not affected. Spermatozoa obtained from allethrin-treated rats failed to undergo acrosome reaction. Results of this study indicate that allethrin affects spermatogenesis and sperm function, thus lending further support to the growing evidence of its toxicity.
Results of this study demonstrate that prolonged exposure to allethrin-based mosquito coil smoke could lead to oxidative stress and compromise germ cell production.
Pyrethroids are known to be neurotoxic. However, their toxic effects including that of allethrin on the male reproductive tract are not elucidated. Adult male rats were treated orally with 25, 50, 100, and 150 mg/kg body weight allethrin every day for 60 days. Lipid peroxidation was increased (p < 0.001) in the caput, cauda, and testes. Nitric oxide production was increased (p < 0.001) in the caput, but unaltered in the cauda and testes. The activities of catalase, glutathione peroxidase, glutathione-S-transferase, and superoxide dismutase were decreased in the caput and cauda where as a decrease was observed in the testis obtained from allethrin treated rats. In the epididymides and testes, damage to tubular architecture, congestion, degeneration of epithelial cell lining, intestinal edema, and presence of dead or degenerating spermatids were observed in a dose dependent manner. The expression profile of genes involved in spermatogenesis (Tgf-beta1), sperm maturation (Spag11e), and sperm function (Defb22) were reduced (p < 0.001) in allethrin rats. The expression of p53 gene was decreased and increased phosphorylation of MAPK (p42/p44) expression was observed the male reproductive tract tissues of allethrin treated rats. Although earlier studies have reported the effects of allethrin inhalation because of the use of mosquito coils and vaporizers, our results for the first time prove that oral exposure to allethrin could affect fertility and may contribute to deregulation of cell cycle in the male reproductive tract.
WFDC (Whey Acidic Protein Four Disulfide Core)-containing proteins have been reported in many species, yet they remain uncharacterized in the rat. In this study, we report the identification and characterization of four rat Wfdc genes, Wfdc6a, Wfdc8, Wfdc11 and Wfdc16. Their expression profile in a variety of tissues including the male reproductive tract is analyzed. Wfdc8, Wfdc11 and Wfdc16 expression is confined to the epididymis, while Wfdc6a is expressed widely. Since gene expression in the male reproductive tract is largely androgen-dependent, Wfdc expression was analyzed in the developing (20-60-day-old) and castrated rats. Their expression pattern in developing rats does not correlate with changes in testosterone. Wfdc genes are, however, down-regulated in castrated adult rats, indicating that their dependence on androgens for expression is more pronounced in the adult than in the developing rat. To test the anti-microbial potential of WFDC8, a recombinant WFDC8 C-terminal protein was produced, which exhibited potent anti-bacterial activity against Eschericia coli. Induction of anti-microbial genes is one of the responses during infections in many organ systems. To determine if WFDCs form the components of male reproductive tract innate immunity, Wfdc8 expression pattern was observed in rats challenged with lipopolysaccharide (LPS). For the first time we report the induction of Wfdc8 gene expression in LPS-treated rats, indicating their contributions to the innate immune functions of the male reproductive tract.
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