Li Ting, Jiang Lianlian, Zheng Shaokai, Qiu Chong, Zhao Nannan, Lin Xiaojun, Ren Hang, Huang Jiyan, Wang Hongxia, Qiu Lianglin
School of Public Health, Nantong University, 9 Seyuan Rd., Nantong, 226019, PR China.
Medical School, Nantong University, 19 Qixiu Rd., Nantong, 226001, PR China.
Chemosphere. 2023 Dec;345:140428. doi: 10.1016/j.chemosphere.2023.140428. Epub 2023 Oct 17.
Persistent organic pollutant perfluorooctane sulfonate (PFOS) is strongly associated with male reproductive disorders, but the related mechanisms are still not fully understood. In this study, we used in vivo and in vitro models to explore the role of organic anion transporting polypeptide 3a1 (Oatp3a1) on PFOS-induced male reproductive injury. Thirty male C57BL/6 (B6) mice were orally given PFOS (0-10 mg/kg/bw) for 28 days. Body weight, organ index, sperm count, histology, and blood-testis barrier (BTB) integrity were evaluated. Primary Sertoli cells were used to describe the related molecular mechanisms of male reproductive injury caused by PFOS. Our results showed that PFOS induced a decrease in sperm count, morphological damage to testicular Sertoli cells, and disruption of BTB. In the in vitro model, exposure to PFOS significantly increased Oatp3a1 mRNA and protein levels and decreased miR-23a-3p expression in Sertoli cells, accompanied by reduced trans-epithelial electrical resistance (TEER) value. By performing the C-PFOS uptake experiment, we showed that C-PFOS uptake in HEK293-Oatp3a1 cells was apparently higher than in HEK293-MOCK cells. Meanwhile, treating Sertoli cells with Oatp3a1 siRNA significantly decreased Oatp3a1 expression and rescued PFOS-induced decreases in TEER value. As such, the present study highlights that Oatp3a1 may play an important role in the toxic effect of PFOS on Sertoli cells, advancing our understanding of molecular mechanisms for PFOS-induced male reproductive disorders.
持久性有机污染物全氟辛烷磺酸(PFOS)与男性生殖系统紊乱密切相关,但其相关机制仍未完全明确。在本研究中,我们利用体内和体外模型来探究有机阴离子转运多肽3a1(Oatp3a1)在PFOS诱导的雄性生殖损伤中的作用。30只雄性C57BL/6(B6)小鼠经口给予PFOS(0 - 10毫克/千克体重),持续28天。评估体重、器官指数、精子数量、组织学以及血睾屏障(BTB)完整性。原代支持细胞用于描述PFOS导致雄性生殖损伤的相关分子机制。我们的结果显示,PFOS导致精子数量减少、睾丸支持细胞形态损伤以及BTB破坏。在体外模型中,暴露于PFOS显著增加支持细胞中Oatp3a1 mRNA和蛋白水平,并降低miR - 23a - 3p表达,同时伴有跨上皮电阻(TEER)值降低。通过进行C - PFOS摄取实验,我们发现HEK293 - Oatp3a1细胞对C - PFOS的摄取明显高于HEK293 - MOCK细胞。同时,用Oatp3a1 siRNA处理支持细胞显著降低Oatp3a1表达,并挽救了PFOS诱导的TEER值下降。因此,本研究强调Oatp3a1可能在PFOS对支持细胞的毒性作用中发挥重要作用,增进了我们对PFOS诱导男性生殖系统紊乱分子机制的理解。