支持细胞
间质细胞
睾酮(贴片)
内科学
类固醇生成急性调节蛋白
内分泌学
全氟辛烷
精子
生物
分泌物
体外
化学
激素
精子发生
男科
基因表达
基因
医学
促黄体激素
生物化学
磺酸盐
有机化学
钠
作者
Jiyan Huang,Hang Ren,Anni Chen,Ting Li,Hongxia Wang,Lianlian Jiang,Shaokai Zheng,Qi Han,Binyan Ji,Xipei Wang,Jianhua Qu,Jianya Zhao,Lianglin Qiu
标识
DOI:10.1016/j.envpol.2022.118960
摘要
Perfluorooctane sulfonate (PFOS) is associated with male reproductive disorder, but the related mechanisms are still unclear. In this study, we used in vivo and in vitro models to explore the role of Sertoli cell-derived exosomes (SC-Exo)/miR-9-3p/StAR signaling pathway on PFOS-induced suppression of testosterone biosynthesis. Forty male ICR mice were orally administrated PFOS (0.5-10 mg/kg/bw) for 4 weeks. Bodyweight, organ index, sperm count, reproductive hormones were evaluated. Primary Sertoli cells and Leydig cells were used to delineate the molecular mechanisms that mediate the effects of PFOS on testosterone biosynthesis. Our results demonstrated that PFOS dose-dependently induced a decrease in sperm count, low levels of testosterone, and damage in testicular interstitium morphology. In vitro models, PFOS significantly increased miR-9-3p levels in Sertoli cells and SC-Exo, accompanied by a decrease in testosterone secretion and StAR expression in Leydig cells when Leydig cells were exposed to SC-Exo. Meanwhile, inhibition of SC-Exo or miR-9-3p by their inhibitors significantly rescued PFOS-induced decreases in testosterone secretion and the mRNA and protein expression of the StAR gene in Leydig cells. In summary, the present study highlights the role of the SC-Exo/miR-9-3p/StAR signaling pathway in PFOS-induced suppression of testosterone biosynthesis, advancing our understanding of molecular mechanisms for PFOS-induced male reproductive disorders.
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