Department of Animal Science & Technology and BET Research Institute, Chgroung-Ang University, Anseong, Gyeonggi-do, 17546, Republic of Korea.
Department of Animal Resources Science, Kongju National University, Yesan, Chungnam-do, 32439, Republic of Korea.
Ecotoxicol Environ Saf. 2020 Jun 15;196:110512. doi: 10.1016/j.ecoenv.2020.110512. Epub 2020 Mar 31.
Although there are numerous studies on bisphenol A (BPA) on the testis and spermatozoa, the effect of BPA on the physiological link between the testis and maturation of spermatozoa has not been studied. To provide an optimal environment (acidic pH) for sperm maturation in the epididymis, clear cells secrete protons and principal cells reabsorb bicarbonate and the secreted proton. Because of its crucial role in sperm maturation and fertility, functional changes in the epididymis following BPA exposure must be considered to fully understand the mechanisms of BPA on male fertility. Here, we identified the adverse effects of BPA exposure during puberty in male mice. CD-1 male mice were gavaged daily with vehicle (corn oil) and 50 mg BPA/kg-BW for 6 weeks. We determined the changes in epididymis, functional sperm parameters including motility, capacitation status, tyrosine phosphorylation, and fertility-related protein expression and in vitro and in vivo fertility rate following BPA exposure. Expression of vacuolar-type H + -ATPase is necessary for the secretion of protons by clear cells of the caput epididymis and was directly down-regulated following BPA exposure, while there were no changes in the other epithelial cell types in the epididymis. Also, pERK 1/2 signaling pathway was increased significantly in the caput epididymis following BPA exposure. Consequently, the luminal pH slightly increased, resulting in premature capacitation of spermatozoa. Moreover, there was a significant loss of the acrosomal membrane following an increase of protein tyrosine phosphorylation, while PKA activity decreased during sperm capacitation. Fertility-related proteins also showed aberrant expression upon BPA exposure. These modifications resulted in decreased male fertility in vitro and in vivo.
尽管有许多关于双酚 A(BPA)对睾丸和精子的研究,但 BPA 对睾丸和精子成熟之间生理联系的影响尚未得到研究。为了在附睾中为精子成熟提供最佳环境(酸性 pH 值),亮细胞分泌质子,主细胞再吸收碳酸氢盐和分泌的质子。由于其在精子成熟和生育力中的关键作用,必须考虑 BPA 暴露后附睾的功能变化,以充分了解 BPA 对男性生育力的作用机制。在这里,我们确定了青春期雄性小鼠暴露于 BPA 后的不良影响。CD-1 雄性小鼠每天用载体(玉米油)和 50mg/kg-BW 的 BPA 灌胃 6 周。我们确定了 BPA 暴露后附睾、功能精子参数(包括运动、获能状态、酪氨酸磷酸化和与生育力相关的蛋白表达)的变化,以及体外和体内生育力。空泡型 H + -ATPase 的表达对于附睾头部亮细胞分泌质子是必需的,并且在 BPA 暴露后直接下调,而附睾中的其他上皮细胞类型没有变化。此外,BPA 暴露后 caput epididymis 中的 pERK 1/2 信号通路显著增加。结果,管腔 pH 值略有升高,导致精子过早获能。此外,由于蛋白酪氨酸磷酸化增加,顶体膜丢失明显,而在精子获能过程中 PKA 活性降低。生育力相关蛋白的表达也发生了异常。这些修饰导致体外和体内雄性生育力下降。