电磁作用后大鼠睾丸超氧化物歧化酶基因表达及超微结构变化

Zeng Li-hua, Guo Guo-Zheng, Ren Dong-qing, Wei Li-Chun, Zeng Gui-ying, Guo Yao
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摘要

目的研究电磁辐射(EMR)后大鼠睾丸超氧化物歧化酶(CuZnSOD、MnSOD)的表达及超微结构的变化,探讨EMR对生殖的影响机制。以雄性SD大鼠作为体内模型。把老鼠暴露在电磁场中。通过逆转录聚合酶链反应(RT-PCR)检测睾丸中锰超氧化物歧化酶(MnSOD)和铜/锌超氧化物歧化酶(CuZnSOD) mRNA的表达,并制备睾丸样品,透射电镜观察辐照后6h、12h、24h和48h的超微结构。在大鼠睾丸中,MnSOD mRNA的表达在照射后24h降低,CuZnSOD mRNA的表达没有变化;辐照后24h MnSOD/CuZnSOD比值下降。辐照后不同时间睾丸均有不同程度的损伤,其中24h损伤较其他时间更为严重。暴露后24h,大鼠睾丸间质细胞、精原细胞的染色质在边界聚集,内质网(ER)扩张、空泡化。支撑细胞的变化较其他细胞更为严重。结果表明,电磁暴露后大鼠睾丸MnSOD基因表达降低,超微结构受损。这些变化可能引起其他作用,MnSOD表达的变化可能反映了大鼠机体对氧化应激的一种防御机制。如果这些变化不能及时恢复,可能会造成更严重的影响。因此,EMR可以引起大鼠睾丸的一些变化,从而改变其生殖功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The gene expression of superoxide dismutase and the changes of the ultrastructure of rat testis after exposed to electromagnetics
The aim is to study the expression of superoxide dismutase (CuZnSOD, MnSOD) and the changes of ultrastructure in rat testis after electromagnetic radiation (EMR) so as to investigate the mechanisms of EMR effect on procreation. As an in vivo model, male SD rats were used. Rats were exposed to the field of electromagnetics. By reverse transcription-polymerase chain reaction (RT-PCR), manganese SOD (MnSOD) and copper/zinc SOD (CuZnSOD) mRNA in the testis have been tested and the testis samples were prepared for transmission electron microscopy to observe the ultrastructure at 6h, 12h, 24h and 48h after radiation. In rat testis, MnSOD mRNA expression decreased at 24h and CuZnSOD mRNA expression did not change after radiation; the ratio of MnSOD/CuZnSOD decreased at 24h after radiation. These were some degree injuries in the testis at different time after radiation, the testis damage at 24h was more serious than that at other times after radiation. At 24h after exposure, the chromatin was gathered in the border and the endoplasmic reticulum (ER) was dilated and vacuolated in interstitial cells, spermatogonium cells of rat testis. The changes in sustentacular cells was more serious than the other cells. The results showed that the MnSOD gene expression was decreased and the ultrastructure of rat testis were damaged after exposure to electromagnetics. These changes may induce the other effects, and the change of MnSOD expression might reflect a defensive mechanism of rat body against oxidative stress. If these changes would not regain in time, they may cause worse effects. Thus, EMR could induce some changes in the testis of rats so as to alter the procreative function.
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