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基于透明带糖蛋白的避孕疫苗用于犬和其他野生动物的种群管理。

Contraceptive vaccines based on the zona pellucida glycoproteins for dogs and other wildlife population management.

机构信息

Reproductive Cell Biology Laboratory, National Institute of Immunology, Aruna Asaf Ali Marg, New Delhi, India.

出版信息

Am J Reprod Immunol. 2011 Jul;66(1):51-62. doi: 10.1111/j.1600-0897.2011.01004.x. Epub 2011 Apr 19.

Abstract

Zona pellucida (ZP) glycoproteins, by virtue of their critical role in fertilization, have been proposed as candidate antigens for the development of contraceptive vaccines. In this review, the potential of a ZP-based contraceptive vaccine for the management of wildlife population, with special reference to street dogs, is discussed. Immunization of various animal species, including female dogs, with native porcine ZP led to inhibition of fertility, which was associated with the ovarian dysfunction. Immunization of female dogs with Escherichia coli-expressed recombinant dog ZP glycoprotein-3 (ZP3) either coupled to diphtheria toxoid or expressed as fusion protein with 'promiscuous' T non-B-cell epitope of tetanus toxoid also led to inhibition of fertility. To improve the contraceptive efficacy of ZP-based contraceptive vaccine, various groups are working on improving the immunogen, use of DNA vaccine as prime-boost strategy, and delivering the zona proteins/peptides presented on either virus-like particles or entrapped in microsphere. Host-specific live vectors such as ectromelia virus and cytomegalovirus have also been used to deliver mouse ZP3 in mice. Various studies show the enormous potential of the ZP-based vaccine for the management of wildlife population, where permanent sterilization may be desirable.

摘要

透明带(ZP)糖蛋白因其在受精过程中的关键作用,已被提议作为开发避孕疫苗的候选抗原。在这篇综述中,讨论了基于 ZP 的避孕疫苗在野生动物种群管理中的潜力,特别是针对流浪狗。用天然猪 ZP 对各种动物物种(包括母狗)进行免疫接种会导致生育能力受到抑制,这与卵巢功能障碍有关。用大肠杆菌表达的重组狗 ZP 糖蛋白-3(ZP3)免疫接种雌性狗,与白喉毒素偶联或与破伤风类毒素的“混杂”T 非 B 细胞表位融合表达,也会导致生育能力受到抑制。为了提高基于 ZP 的避孕疫苗的避孕效果,各个研究小组正在致力于改进免疫原,使用 DNA 疫苗作为初次免疫-加强免疫策略,并将病毒样颗粒上呈现的或包埋在微球中的 zona 蛋白/肽递送至体内。宿主特异性活载体,如疱疹病毒和巨细胞病毒,也被用于在小鼠中递送小鼠 ZP3。各种研究表明,基于 ZP 的疫苗在野生动物种群管理中具有巨大的潜力,在这种情况下,永久性绝育可能是理想的。

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