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首页> 外文期刊>Science in China, Series C. Life science >Construction of sperm-specific lactate dehydrogenase DNA vaccine and experimental study of its immuno-contraceptive effect on mice
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Construction of sperm-specific lactate dehydrogenase DNA vaccine and experimental study of its immuno-contraceptive effect on mice

机译:精子特异性乳酸脱氢酶DNA疫苗的构建及其对小鼠免疫避孕作用的实验研究

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摘要

Lactate dehydrogenase C4 (LDHC4) is a key enzyme for sperm metabolism. It is distributed specifically in testis and is highly immunogenic. In this study, two DNA vaccines pVAX1-hLDHC and pVAX1-mLDHC were constructed by inserting coding sequences of human and mice LDHC4 into the eukaryotic expression vector pVAX1. The production of LDHC4 specific antibodies was induced in the sera of vaccinated mice and the reproductive tract secretions of vaccinated female mice through immunization by mucosal surface instillation. Furthermore, the antibody titer increased with the times of immunization. In the mating experiment, the number of newborns of the vaccinated mice reduced significantly and some immunized female mice even lost the ability to bear any offsprings, suggesting that the difference between the immunized and control mice was statistically significant. Sperm agglutination analysis indicated that both the antisera from immunized mice and the reproductive tract secretions of vaccinated female mice could agglutinate normal sperms. Results of immunohistochemistry showed that the antibodies present in the sera of immunized mice and the reproductive tract secretions of vaccinated female mice could specifically react with LDHC4 antigen, which mainly locates in the cytoplasm, acrosome membrane externa and acrosome capsule of the sperm. Taken together, our results indicated that the constructed contraceptive DNA vaccines did yield immunocontraceptive effects on mice and this would enable clinical trials in near future.
机译:乳酸脱氢酶C4(LDHC4)是精子代谢的关键酶。它专门分布在睾丸中,具有高度免疫原性。在这项研究中,通过将人和小鼠LDHC4的编码序列插入真核表达载体pVAX1中,构建了两种DNA疫苗pVAX1-hLDHC和pVAX1-mLDHC。通过粘膜表面滴注免疫,在接种小鼠的血清和接种雌性小鼠的生殖道中诱导了LDHC4特异性抗体的产生。此外,抗体滴度随免疫时间而增加。在交配实验中,接种疫苗的小鼠的新生儿数量显着减少,一些免疫的雌性小鼠甚至丧失了承受任何后代的能力,这表明免疫小鼠和对照小鼠之间的差异具有统计学意义。精子凝集分析表明,免疫小鼠的抗血清和接种疫苗的雌性小鼠的生殖道分泌物均可凝集正常的精子。免疫组织化学结果显示,免疫小鼠血清中存在的抗体和接种的雌性小鼠的生殖道分泌物可与LDHC4抗原特异性反应,LDHC4抗原主要位于细胞质,顶体外膜和顶体中。综上所述,我们的结果表明,所构建的避孕DNA疫苗确实对小鼠产生了免疫避孕作用,这将在不久的将来进行临床试验。

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