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评价一种新型附睾精子蛋白 SFP2 在小鼠模型中的避孕潜力。

Evaluation of contraceptive potential of a novel epididymal sperm protein SFP2 in a mouse model.

机构信息

Department of Gamete Immunobiology, National Institute for Research in Reproductive Health, Parel, Mumbai, India.

出版信息

Am J Reprod Immunol. 2011 Sep;66(3):185-98. doi: 10.1111/j.1600-0897.2011.01030.x. Epub 2011 Jun 21.

Abstract

PROBLEM

Sperm flagellar protein 2 (SFP2), which was earlier identified using a novel combinatorial approach, was evaluated for its contraceptive potential in mice.

METHOD OF STUDY

Male mice were actively immunized with two synthetic peptides of SFP2. Antipeptide antibody was characterized by Western blot and indirect immunofluorescence. Immune response was monitored, and mating studies were performed 6 and 22 weeks post-immunization.

RESULT

Antibodies to the SFP2 peptide 1 recognized a doublet at 220- to 230-kDa region only in the epididymal protein extract. Peptide 1 antibody recognized the cognate protein on spermatozoa from mouse, rat, and human. Histological analysis of testis and epididymis of the immunized mice indicated no deleterious effect. Incubation of sperm with the immune sera of peptide 1 caused significant reduction in motility and viability but did not agglutinate sperm. Only synthetic peptide 1 gave rise to high-level antibodies in all the immunized mice, which on mating resulted in reduced fertility rate (20%) when compared with PBS control animals (100%). The antibody levels in the immunized males declined by 22 weeks post-immunization, resulting in 100% reinstatement of fertility.

CONCLUSION

These data provide an experimental basis for the development of effective contraceptive vaccine based on new epididymal target.

摘要

问题

先前使用新的组合方法鉴定的精子鞭毛蛋白 2 (SFP2) ,在小鼠中评估其避孕潜力。

方法

雄性小鼠用两种 SFP2 合成肽主动免疫。通过 Western blot 和间接免疫荧光法对抗体进行鉴定。监测免疫反应,并在免疫后 6 和 22 周进行交配研究。

结果

针对 SFP2 肽 1 的抗体仅在附睾蛋白提取物中识别 220-230kDa 区域的二聚体。肽 1 抗体识别来自小鼠、大鼠和人类精子的同源蛋白。免疫小鼠的睾丸和附睾组织学分析表明没有有害影响。将精子与肽 1 的免疫血清孵育会导致显著降低精子活力和活力,但不会使精子凝集。只有合成肽 1 在所有免疫小鼠中产生高水平的抗体,与 PBS 对照组动物(100%)相比,该抗体导致生育力降低(20%)。免疫后 22 周,免疫雄性的抗体水平下降,导致生育力 100%恢复。

结论

这些数据为基于新的附睾靶标开发有效的避孕疫苗提供了实验基础。

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