Herbert C A, Trigg T E
School of Biological, Earth and Environmental Sciences, The University of New South Wales, Sydney, NSW 2052, Australia.
Anim Reprod Sci. 2005 Aug;88(1-2):141-53. doi: 10.1016/j.anireprosci.2005.05.007.
Gonadotropin releasing hormone (GnRH) has long been recognized as a potential target for the control and management of fertility in female animals. Attempts to apply GnRH-based technology to manage fertility have focussed on the development of GnRH agonists, antagonists and vaccines. All of these methods have potential, but the widespread application of these technologies has been limited to date. The greatest advance in the use of GnRH-based technology for long-term fertility control in recent years has been the development and commercialization of depot formulations that release GnRH agonists for periods of up to 1 year. These products have a broad range of potential applications in production and domestic animal management. The further development and commercialization of GnRH vaccines has been hampered by the variability of response between individual animals. The need to use adjuvant and multiple boosters also make this a less attractive option than the current GnRH agonist technology. However, GnRH vaccines have the advantage that they do not induce the initial stimulatory response that follows GnRH agonist administration. GnRH antagonists and GnRH-toxin conjugates show promise but are in an earlier phase of development. To date, no depot or long-acting formulations of antagonists have been developed. GnRH-toxin conjugates have yet to achieve permanent sterilization, but further dose-response trials may advance this approach.
促性腺激素释放激素(GnRH)长期以来一直被认为是控制和管理雌性动物生育能力的潜在靶点。将基于GnRH的技术应用于生育管理的尝试主要集中在GnRH激动剂、拮抗剂和疫苗的研发上。所有这些方法都有潜力,但迄今为止,这些技术的广泛应用受到了限制。近年来,在基于GnRH的技术用于长期生育控制方面取得的最大进展是长效制剂的开发和商业化,这些制剂可释放GnRH激动剂长达1年。这些产品在生产和家畜管理方面有广泛的潜在应用。GnRH疫苗的进一步开发和商业化受到个体动物反应变异性的阻碍。使用佐剂和多次加强免疫的需求也使得它比目前的GnRH激动剂技术吸引力更小。然而,GnRH疫苗的优势在于它们不会引发GnRH激动剂给药后出现的初始刺激反应。GnRH拮抗剂和GnRH-毒素偶联物显示出前景,但尚处于早期开发阶段。迄今为止,尚未开发出拮抗剂的长效或缓释制剂。GnRH-毒素偶联物尚未实现永久性绝育,但进一步的剂量反应试验可能会推动这种方法的发展。