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基于透明带糖蛋白的免疫避孕疫苗研发中的可行性与挑战。

Feasibility and challenges in the development of immunocontraceptive vaccine based on zona pellucida glycoproteins.

作者信息

Choudhury Sangeeta, Srivastava Neelu, Narwal P S, Rath Archana, Jaiswal Sonika, Gupta Satish K

机构信息

Gamete Antigen Laboratory, National Institute of Immunology, Aruna Asaf Ali Marg, New Delhi 110 067, India.

出版信息

Soc Reprod Fertil Suppl. 2007;63:479-93.

Abstract

The zona pellucida (ZP) glycoproteins play a crucial role during fertilization and thus are considered as important target antigens for the development of immunocontraceptive vaccines aiming to inhibit fertility at a pre-fertilization stage. In order to evaluate the immunocontraceptive potential of ZP glycoproteins, bonnet monkey (Macaca radiata) ZP2, ZP3 and ZP4 have been cloned and expressed using either E. coli or baculovirus expression systems. Active immunization studies with the recombinant ZP glycoproteins in female baboons (Papio anubis) and bonnet monkeys revealed curtailment of fertility. In order to minimize the ovarian pathology, synthetic peptides corresponding to B cell epitopes that are devoid of 'oophoritogenic' T cell epitopes were designed and their in vitro immunocontraceptive potential explored. There are several issues that need to be addressed before ZP glycoproteins based immunocontraceptive vaccines become feasible for use in humans. Nonetheless, the utility of such a vaccine is imminent for controlling wild life population. In this direction, active immunization of female non-descript dogs with recombinant canine ZP3 conjugated to diphtheria toxoid led to curtailment of fertility. Further, canine ZP3 has also been expressed in insect cells as a fusion protein with rabies virus glycoprotein G (RV-G), an antigen that is involved in providing protection against rabies. The immunogenicity of such a recombinant protein and its potential to curtail fertility was explored both in female mice and dogs. Simultaneously, DNA vaccine encoding canine ZP3 and RV-G have been made and evaluated for their immunogenicity. The results obtained so far, current shortcomings and the possible ways to circumvent these have been discussed in the present manuscript.

摘要

透明带(ZP)糖蛋白在受精过程中起着至关重要的作用,因此被视为开发旨在在受精前阶段抑制生育能力的免疫避孕疫苗的重要靶抗原。为了评估ZP糖蛋白的免疫避孕潜力,帽猴(食蟹猴)的ZP2、ZP3和ZP4已使用大肠杆菌或杆状病毒表达系统进行克隆和表达。用重组ZP糖蛋白对雌性狒狒(阿拉伯狒狒)和帽猴进行主动免疫研究,结果显示生育能力受到抑制。为了将卵巢病理降至最低,设计了与不含“致卵巢炎”T细胞表位的B细胞表位相对应的合成肽,并探索了它们的体外免疫避孕潜力。在基于ZP糖蛋白的免疫避孕疫苗用于人类之前,有几个问题需要解决。尽管如此,这种疫苗对于控制野生动物数量的效用迫在眉睫。在这个方向上,用与白喉类毒素偶联的重组犬ZP3对雌性杂种犬进行主动免疫导致生育能力受到抑制。此外,犬ZP3也已在昆虫细胞中作为与狂犬病病毒糖蛋白G(RV-G)的融合蛋白表达,RV-G是一种参与提供狂犬病保护的抗原。在雌性小鼠和犬中均探索了这种重组蛋白的免疫原性及其抑制生育能力的潜力。同时,已制备了编码犬ZP3和RV-G的DNA疫苗并评估了其免疫原性。本手稿讨论了迄今为止获得的结果、当前的缺点以及规避这些缺点的可能方法。

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