INRAE (CNRS, UMR7247, Université de Tours, IFCE), UMR85 Physiologie de la Reproduction et des Comportements, F-37380 Nouzilly, France.
INRAE (CNRS, UMR7247, Université de Tours, IFCE), UMR85 Physiologie de la Reproduction et des Comportements, F-37380 Nouzilly, France.
Domest Anim Endocrinol. 2020 Oct;73:106466. doi: 10.1016/j.domaniend.2020.106466. Epub 2020 Mar 5.
The discovery of the kisspeptin (Kp) system stirred a burst of research in the field of reproductive neuroendocrinology. In the last 15 yr, the organization and activity of the system, including its neuroanatomical structure, its major physiological functions, and its main pharmacological properties, were outlined. To this endeavor, the use of genetic tools to delete and to restore Kp system functionality in a specific tissue was essential. At present, there is no question as to the key role of the Kp system in mammalian reproduction. However, easily applicable genetic manipulations are unavailable for domestic animals. Hence, many essential details on the physiological mechanisms underlying its action on domestic animals require further investigation. The potentially different effects of the various Kp isoforms, the precise anatomical localization of the Kp receptor, and the respective role played by the 2 main populations of Kp cells in different species are only few of the questions that remain unanswered and that will be illustrated in this review. Furthermore, the application of synthetic pharmacologic tools to manipulate the Kp system is still in its infancy but has produced some interesting results, suggesting the possibility of developing new methods to manage reproduction in domestic animals. In spite of a decade and a half of intense research effort, much work is still required to achieve a comprehensive understanding of the influence of the Kp system on reproduction. Furthermore, Kp system ramifications in other physiological functions are emerging and open new research perspectives.
kisspeptin(Kp)系统的发现激起了生殖神经内分泌学领域的大量研究。在过去的 15 年中,该系统的组织和活性,包括其神经解剖结构、主要生理功能及其主要药理学特性,都已被概述。在这项研究中,使用遗传工具来删除和恢复特定组织中的 Kp 系统功能是必不可少的。目前,Kp 系统在哺乳动物生殖中的关键作用是毫无疑问的。然而,对于家畜来说,还没有易于应用的遗传操作。因此,关于其对家畜作用的生理机制的许多基本细节需要进一步研究。各种 Kp 同工型的潜在不同作用、Kp 受体的确切解剖定位以及不同物种中 2 种主要 Kp 细胞群体各自的作用,只是少数尚未解决的问题,本文将对此进行阐述。此外,应用合成药理学工具来操纵 Kp 系统仍处于起步阶段,但已产生了一些有趣的结果,表明有可能开发新的方法来管理家畜的繁殖。尽管经过了 15 年的密集研究,要全面了解 Kp 系统对生殖的影响,还需要做很多工作。此外,Kp 系统在其他生理功能中的分支正在出现,开辟了新的研究视角。