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氧化应激对小鼠睾丸生精过程及热休克蛋白70表达的影响。

Effect of oxidative stress on the spermatogenic process and hsp70 expressions in mice testes.

作者信息

Kaur Parminder, Bansal M P

机构信息

Department of Biophysics, Panjab University, Chandigarh 160 014, India.

出版信息

Indian J Biochem Biophys. 2003 Aug;40(4):246-51.

Abstract

The effect of oxidative stress on the process of spermatogenesis in terms of hsp70 expression was studied. For creating different oxidative stressed mice, three selenium (Se) levels viz., deficient (group I), adequate (group II) and excess (group III) were fed for 8 weeks in a yeast-based diet. After completion of diet feeding, Se level was significantly decreased in group I and significantly increased in group III, as compared to group II. Glutathione peroxidase (GSH-Px) activity was significantly decreased in both liver and testis in group I animals; however, the activity was comparable in groups II and III. Significant increase in the testis glutathione-S-transferase (GST) activity was observed in group I. No change was seen in group III, when compared to group II. Histological analysis of testis revealed a significant decrease in the germ cell population in group I, as compared to group II, with a predominant effect on spermatid and mature sperm numbers. In group III, displacement of germ cell population was observed. ELISA assays for hsp70 level showed increase in group I as compared to group II, whereas no significant change was observed in group III, as compared to group II. Immunohistochemical analysis revealed intense localization of hsp70 only in spermatid and sperm cells. The expression in groups II and III was homogeneous with slightly increased expression around lumen in group III. The data indicate that excessive oxidative stress in Se deficient group, affects the spermatogenesis process, especially affecting the mature sperm number which in turn leads to infertility.

摘要

研究了氧化应激对精子发生过程中热休克蛋白70(hsp70)表达的影响。为了建立不同氧化应激水平的小鼠模型,在以酵母为基础的饮食中分别添加三种硒(Se)水平,即缺乏(第一组)、适量(第二组)和过量(第三组),持续喂养8周。饮食喂养结束后,与第二组相比,第一组的硒水平显著降低,第三组的硒水平显著升高。第一组动物肝脏和睾丸中的谷胱甘肽过氧化物酶(GSH-Px)活性均显著降低;然而,第二组和第三组的活性相当。第一组睾丸中的谷胱甘肽-S-转移酶(GST)活性显著增加。与第二组相比,第三组未见变化。睾丸组织学分析显示,与第二组相比,第一组的生殖细胞数量显著减少,对精子细胞和成熟精子数量的影响尤为明显。在第三组中,观察到生殖细胞群体的移位。hsp70水平的ELISA检测显示,与第二组相比,第一组升高,而与第二组相比,第三组未见显著变化。免疫组织化学分析显示,hsp70仅在精子细胞和精子中强烈定位。第二组和第三组的表达均匀,第三组管腔周围表达略有增加。数据表明,硒缺乏组的过度氧化应激会影响精子发生过程,尤其是影响成熟精子数量,进而导致不育。

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