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线粒体能量代谢功能障碍与硫丹导致的小鼠生殖毒性及其维生素 E 的保护作用有关。

Mitochondrial energy metabolism dysfunction involved in reproductive toxicity of mice caused by endosulfan and protective effects of vitamin E.

机构信息

Department of Laboratory Animal Science, School of Basic Medical Sciences, Capital Medical University, Beijing 100069, PR China.

出版信息

Ecotoxicol Environ Saf. 2012 Aug;82:96-103. doi: 10.1016/j.ecoenv.2012.05.014. Epub 2012 Jun 15.

Abstract

The experiment was designed to study the mechanism of reproductive toxicity caused by endosulfan in mice and protective effects of vitamin E. The experiment was composed of three groups: the control group did not receive any endosulfan and vitamin E; the endosulfan exposed group received 0.8 mg/kg/d endosulfan and 0mg/kg/d vitamin E; and the endosulfan+vitamin E group received 0.8 mg/kg/d endosulfan and 100mg/kg/d vitamin E. The results showed that vitamin E significantly reversed the decline of the concentration and motility rate of sperm, and inhibited the increase of sperm abnormality rate caused by endosulfan. The activities of superoxide dismutase (SOD), glutathione peroxidase (GSH-PX), and lactate dehydrogenase-C4 (LDH-C4) and the level of adenosine triphosphate (ATP) in the endosulfan+vitamin E group were higher while the malondialdehyde (MDA) content was significantly lower than those of the endosulfan exposed group. The results from pathology and electron microscope observed showed vitamin E decreased the cavities formation by desquamating of spermatogenic cells, stopped the ruptures and disappearances of mitochondrial cristaes in spermatogenic cells, and prevented the breakages and partial dissolvings of sperm tails induced by endosulfan. It is likely that endosulfan could directly damage sperm structures by oxidative stress, leading to a decrease in sperm quantity and quality. It also could indirectly cause a decline in reproductive function by damaging the structure of mitochondria, resulting in energy metabolism dysfunction, which could be one of the mechanisms behind the reproductive toxicity induced by endosulfan. It was inferred that vitamin E helps maintain the structural integrities of sperm architecture and prevent mitochondrial dysfunction through inhibiting oxidative stress, and thereby prevent the reproductive dysfunctions caused by endosulfan.

摘要

本实验旨在研究硫丹对小鼠生殖毒性的作用机制及其维生素 E 的保护作用。实验分为三组:对照组不给予硫丹和维生素 E;硫丹暴露组给予 0.8mg/kg/d 硫丹和 0mg/kg/d 维生素 E;硫丹+维生素 E 组给予 0.8mg/kg/d 硫丹和 100mg/kg/d 维生素 E。结果表明,维生素 E 能显著逆转硫丹所致精子浓度和活力下降,并抑制精子畸形率升高。硫丹+维生素 E 组超氧化物歧化酶(SOD)、谷胱甘肽过氧化物酶(GSH-PX)、乳酸脱氢酶-C4(LDH-C4)活性及三磷酸腺苷(ATP)水平均高于硫丹暴露组,丙二醛(MDA)含量明显低于硫丹暴露组。病理及电镜观察结果显示,维生素 E 可减少精子发生细胞脱落引起的腔形成,阻止精子发生细胞线粒体嵴的破裂和消失,防止硫丹引起的精子尾部断裂和部分溶解。推测硫丹可能通过氧化应激直接损伤精子结构,导致精子数量和质量下降;也可能通过损伤线粒体结构导致能量代谢障碍,间接引起生殖功能下降,这可能是硫丹生殖毒性的作用机制之一。推断维生素 E 通过抑制氧化应激,有助于维持精子结构的完整性,防止线粒体功能障碍,从而预防硫丹引起的生殖功能障碍。

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