首页> 外文期刊>Toxicology: An International Journal Concerned with the Effects of Chemicals on Living Systems >Perfluorooctane sulfonate (PFOS) disrupts blood-testis barrier by down-regulating junction proteins via p38 MAPK/ATF2/MMP9 signaling pathway
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Perfluorooctane sulfonate (PFOS) disrupts blood-testis barrier by down-regulating junction proteins via p38 MAPK/ATF2/MMP9 signaling pathway

机译:通过P38 MAPK / ATF2 / MMP9信号通路,通过P38 MAPK / ATF2 / MMP9信号通路扰动接线蛋白来破坏血液睾丸屏障的血液睾丸屏障

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Perfluorooctane sulfonate (PFOS), an ubiquitous environmental pollutant, has been associated with male reproductive disorders. However, the underlying mechanisms are not yet fully understood. In this study, in vivo and in vitro models were used to explore the effects of PFOS on blood-testis barrier (BTB) and related molecular mechanisms. First, male ICR mice were orally administrated PFOS (0.5-10 mg/kg/bw) for 4 weeks. Bodyweight, sperm count, BTB integrity and the expression of proteins including p38 mitogen-activated protein kinase (MAPK), activating transcription factor 2 (ATF2), matrix metalloproteinase 9 (MMP9), tissue inhibitor of metalloproteinase 1(TIMP1) and BTB related junction proteins were evaluated. Furthermore, mouse primary Sertoli cells were used to delineate the molecular mechanisms that mediate the effects of PFOS on BTB. Our results demonstrated that PFOS dose dependently increased BTB permeability, p38/ATF2 phosphorylation and MMP9 expression, paralleled by decrease in BTB junction protein Occludin and Connexin43 expression. Additionally, similar to the in vivo results, treatment of PFOS time-dependently increased Sertoli cell-based BTB permeability, phosphorylated-p38/ATF2 level, translocation of ATF2 into the nucleus and MMP9 expression/activity, paralleled by decrease in Occludin and Connexin43 expression. Meanwhile, inhibition of p38 by SB203580, knockdown of ATF2, or inhibition of MMP9 was sufficient to reduce the effects of PFOS on the Sertoli cell BTB. As such, the present study highlights a role of the p38/ATF2/MMP9 signaling pathway in PFOS-induced BTB disruption, advancing our understanding of molecular mechanisms for PFOS-induced male reproductive disorders. (C) 2016 Elsevier Ireland Ltd. All rights reserved.
机译:全氟辛烷磺酸盐(PFOS),普遍存在的环境污染物,已与雄性生殖障碍有关。然而,潜在的机制尚未完全理解。在本研究中,体内和体外模型用于探索PFOS对血液睾丸屏障(BTB)和相关分子机制的影响。首先,雄性ICR小鼠是口服给药的pfos(0.5-10mg / kg / bw)4周。体重,精子计数,BTB完整性和蛋白质的表达,包括P38丝裂型活化蛋白激酶(MAPK),激活转录因子2(ATF2),基质金属蛋白酶9(MMP9),金属蛋白酶1(TIMP1)和BTB相关结的组织抑制剂评估蛋白质。此外,使用小鼠原发性血清细胞来描绘介导PFOS对BTB的影响的分子机制。我们的结果表明,PFOS剂量依赖性增加了BTB渗透性,P38 / ATF2磷酸化和MMP9表达,并通过BTB结蛋白闭塞蛋白和Connexin43表达的降低平行。另外,类似于体内结果,对PFO的处理时间依赖性增加了基于血清细胞的BTB渗透性,磷酸化-P38 / ATF2水平,ATF2的易位进入核和MMP9表达/活性,并通过occludin和Connexin43表达的降低平行。同时,通过SB203580抑制P38,敲低ATF2或对MMP9的抑制足以减少PFOS对血清细胞BTB上的影响。因此,本研究突出了P38 / ATF2 / MMP9信号传导途径在PFOS诱导的BTB中断中的作用,推动了我们对PFOS诱导的雄性生殖障碍的分子机制的理解。 (c)2016 Elsevier Ireland Ltd.保留所有权利。

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