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Study of the mechanism of mitochondrial division and mitochondrial autophagy in the male reproductive toxicity induced by nickel nanoparticles

机译:线粒体分裂机制的研究线粒体自噬在男性生殖毒性引起的镍纳米粒子

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Male reproductive health is deteriorating, and fertility is largely affected by environmental factors. This study aims to investigate the potential mechanism underlying mitochondrial division and mitochondrial autophagy in the male reproductive toxicity of nickel nanoparticles (Ni NPs). An in vivo mouse (BALB/c) model was constructed to calculate testicular organ coefficients and sperm abnormality rates, and detect serum reproductive hormones, testicular pathological morphology, and the expression of Drp1, Pink1, and Parkin proteins. Furthermore, mouse spermatogonia (GC-1 cells) were used as an in vitro model to detect cell viability, apoptosis, intracellular reactive oxygen species (ROS), mitochondrial membrane potential (MMP), ATP and protein expression. After treatment with an additional inhibitor, Mdivi-1, such influences were further detected to explore the possible mechanism of male reproductive toxicity induced by Ni NPs. The in vivo studies showed that compared with the control group, exposure to Ni NPs reduced the serum levels of testosterone, follicle stimulating hormone and luteinizing hormone, increased the sperm abnormality rate, widened the gaps in the seminiferous tubules of the testes, decreased the sperm count, and increased the expression of Drp1, Pink1 and Parkin proteins (all P < 0.05). The in vitro studies further confirmed that compared with the control group, Ni NPs can lead to decreased cell viability, increased apoptosis, accumulation of ROS, decreased MMP and ATP, increased expression of Drp1, Pink1, Parkin, Bax, caspase-9 and caspase-3 proteins, and decreased expression of Bcl-2, resulting in an increased value of Bax/Bcl-2. It is worth noting that such influences induced by Ni NPs were significantly reversed by the additional Mdivi-1. In conclusion, Drp1-mediated mitochondrial division and Pink1/Parkin-mediated mitochondrial autophagy play an important role in the male reproductive toxicity of Ni NPs, during which both of them form an interaction cycle and accelerate the occurrence of cell apoptosis.
机译:男性生殖健康恶化,生育能力在很大程度上是受到环境的影响的因素。潜在机制的线粒体分裂和线粒体自噬的男性生殖毒性的镍纳米颗粒(倪NPs)。构建计算睾丸器官系数和精子畸形率检测血清生殖激素,睾丸病理形态学和的表达Drp1 Pink1,帕金蛋白质。鼠标spermatogonia (GC-1细胞)被用作体外模型来检测细胞活力,细胞凋亡,细胞内活性氧(ROS),线粒体膜电位(MMP),ATP和蛋白质表达。一个额外的抑制剂,Mdivi-1,这样的影响进一步探索发现的可能吗男性生殖毒性诱导机制倪NPs。与对照组相比,倪NPs血清睾酮水平降低,促卵泡激素和促黄体激素,精子畸形率增加,细精管的差距扩大睾丸精子数减少,Drp1的表达增加,Pink1和帕金蛋白(P < 0.05)。研究进一步证实,相比之下对照组,倪NPs会导致细胞减少生存能力,增加细胞凋亡,积累ROS, MMP和ATP下降,增加表达式Drp1、Pink1帕金,伯灵顿,caspase-9和caspase-3蛋白质,减少的表达bcl - 2,导致增加的价值伯灵顿/ bcl - 2。倪NPs引起的影响是显著的额外的Mdivi-1逆转。结论,Drp1-mediated线粒体分裂和Pink1 / Parkin-mediated线粒体自噬男性生殖方面发挥重要作用倪NPs毒性,在此期间,他们两人形成一个互动循环,加快细胞凋亡的发生。

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