CarMeN, INRA 1235/INSERM 1060/UCBL1/INSA Lyon/HCL, Faculté de Médecine, LYON SUD-BP 12, 165 Chemin du Grand Revoyet, 69921 Oullins Cedex, France.
Toxicology. 2013 Aug 9;310:29-38. doi: 10.1016/j.tox.2013.05.002. Epub 2013 May 22.
Mycotoxin zearalenone (ZEN) is a cereal contaminant produced by various species of Fusarium fungi. When interacting with estrogen receptors, ZEN leads to animal fertility disturbances and other reproductive pathologies. Few data are available on the effects of perinatal exposure to ZEN, particularly in the blood-testis barrier. The aim of this study was to assess the impact of ZEN in adult rats exposed neonatally. We focused on the expression and cellular localization of major ABC transporters expressed in adult rat testis, comparing ZEN effects with those of Estradiol Benzoate (EB) neonatal exposure. Dose-dependent and long term modulations of mRNA and protein levels of Abcb1, Abcc1, Abcg2, Abcc4 and Abcc5 were observed, along with Abcc4 protein cellular delocalization. ZEN exposure of SerW3 Sertoli cells showed modulation of Abcb1, Abcc4 and Abcc5. Comparison with EB exposure showed similar modulation profiles for Abcg2 but differential modulations for Abcb1, Abcc1, Abcc4 and Abcc5 in vivo, and a similar profile for Abcb1 modulation by ZEN and EB, but differential modulation for Abcc4 and Abcc5 in vitro. ZEN and EB effects were inhibited by in vitro addition of the pure anti-estrogen ICI 182.780, suggesting the at least partial implication of ZEN estrogenic activity in these modulations. These results suggested that ZEN neonatal exposure could affect the exposure of testis to ABC transporter substrates, and negatively influence spermatogenesis and male fertility.
真菌镰刀菌产生的真菌毒素玉米赤霉烯酮(ZEN)是一种谷物污染物。当与雌激素受体相互作用时,ZEN 会导致动物生育障碍和其他生殖病理。关于围产期暴露于 ZEN 的影响,特别是在血睾屏障中,数据很少。本研究旨在评估新生大鼠暴露于 ZEN 的影响。我们专注于成年大鼠睾丸中表达的主要 ABC 转运蛋白的表达和细胞定位,比较 ZEN 与苯甲酸雌二醇(EB)对新生大鼠的影响。观察到 mRNA 和蛋白水平的 Abcb1、Abcc1、Abcg2、Abcc4 和 Abcc5 的剂量依赖性和长期调节,以及 Abcc4 蛋白的细胞定位改变。SerW3 支持细胞暴露于 ZEN 显示 Abcb1、Abcc4 和 Abcc5 的调节。与 EB 暴露的比较显示 Abcg2 的相似调节谱,但体内 Abcb1、Abcc1、Abcc4 和 Abcc5 的调节不同,ZEN 和 EB 对 Abcb1 的调节相似,但体外 Abcc4 和 Abcc5 的调节不同。ZEN 和 EB 的作用通过体外添加纯抗雌激素 ICI 182.780 被抑制,表明 ZEN 雌激素活性至少部分参与了这些调节。这些结果表明,新生大鼠暴露于 ZEN 可能会影响睾丸对 ABC 转运蛋白底物的暴露,并对精子发生和男性生育能力产生负面影响。