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Chlorpyrifos Induction of Testicular-Cell Apoptosis through Generation of Reactive Oxygen Species and Phosphorylation of AMPK

机译:通过产生反应性氧物种和AMPK磷酸化通过产生睾丸细胞凋亡的抗菌诱导

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Chlorpyrifos (CPF) is the most frequently applied insecticide. Aside from effects on the neuronal cholinergic system, previous studies suggested a potential relationship between CPF exposure and male infertility; however, the molecular mechanism remains elusive. The aim of this study was to investigate the toxic effect of CPF on testicular cells and the potential mechanism via in vitro and in vivo experiments. The cytotoxic effects of CPF on mouse-derived spermatogonial cell lines (GC-1), Sertoli cell lines (TM4) and Leydig cell lines (TM3) were assessed by a CCK-8 assay, flow cytometry, a TUNEL assay, quantitative RT-PCR, and Western blotting. Exposure to CPF (10-50 mu M) for 12 or 24 h resulted in significant death in all three testicular cell lines. The number of TUNEL-positive apoptotic cells were dose-dependent and increased with raised CPF concentrations. Further investigation indicated that CPF induced cell-cycle arrest and then promoted cell apoptosis. Additionally, CPF increased reactive-oxygen-species (ROS) production and lipid peroxidation (MDA) and reduced mitochondrial-membrane potential. The mechanism of cell apoptosis induced by CPF involved an increase in phosphorylated-AMP-activated-protein-kinase (p-AMPK) levels in the tested cells. In vivo, the expression of steroid hormone-biosynthesis-related genes in testis, spleen, and lung in F0 and F1 mice were downregulated when there was intraperitoneal injection or dietary supplementation of CPF. This study provides a potential molecular mechanism of CPF-induced toxicity in testicular cells and a theoretical basis for future treatment of male infertility.
机译:毒死蜱(CPF)是最频繁使用的杀虫剂。除了神经胆碱能系统的影响,以往的研究表明CPF曝光与男性不育的潜在关系;然而,分子机制仍不清楚。本研究的目的是通过在体外和体内实验,调查CPF对睾丸细胞和潜在的机制毒性作用。 CPF对小鼠衍生的精原细胞系中的细胞毒性作用(GC-1),塞尔托利细胞系(TM4)和睾丸间质细胞系(TM3)用CCK-8测定法评估,流式细胞术,TUNEL分析,定量RT- PCR和Western印迹。暴露于CPF(10-50微米)12或24小时导致显著死亡在所有三个睾丸细胞系。 TUNEL阳性凋亡细胞的数目是剂量依赖性的和具有凸起CPF浓度增加。进一步的调查表明,CPF诱导细胞周期阻滞,然后促进细胞凋亡。此外,CPF增加反应性氧类(ROS)生成和脂质过氧化(MDA)和降低的线粒体膜电位。由CPF诱导的细胞凋亡的机制参与磷酸化-AMP-活化的蛋白激酶(P-AMPK)在测试的细胞水平的增加。在体内,在睾丸,脾脏,肺和类固醇激素生物合成相关基因在F0和F1小鼠中表达时,有腹膜内注射或CPF的膳食补充被下调。本研究提供了在睾丸细胞CPF诱导的毒性和男性不育症的未来治疗的理论基础的潜在分子机制。

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