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神经生长因子(NGF)与动物繁殖

Nerve Growth Factor (NGF) and Animal Reproduction.

作者信息

Maranesi Margherita, Boiti Cristiano, Zerani Massimo

机构信息

Dipartimento di Medicina Veterinaria, Università di Perugia, Perugia, PG, Italy.

出版信息

Adv Exp Med Biol. 2021;1331:277-287. doi: 10.1007/978-3-030-74046-7_19.

Abstract

Stimuli that lead to the release of gonadotropin-releasing hormone (GnRH) and pituitary gonadotropins and, consequently, ovulation in mammals fall into two broad categories. In the first, high plasma oestrogen concentrations induce the events that trigger ovulation, a characteristic of spontaneous ovulators. In the second, nerve stimuli occurring during mating reach the hypothalamus and trigger the release of GnRH and ovulation with a neuroendocrine reflex that characterizes induced ovulators.In this review, we will give an overview of the distribution of NGF and its expression in the different tissues of the male accessory sex glands, the main sites of NGF production. Next, we will highlight the role of NGF in sperm function and its potential cryopreserving role in artificial insemination techniques. Finally, we will evaluate the functions of NGF in ovulation, particularly in induced ovulators. Overall, the information obtained so far indicates that NGF is widely distributed in organs that regulate the reproductive activity, in both males and females. In spontaneous ovulators, NGF exerts mainly a luteotrophic action, while, in induced ovulators it is the main ovulation-inducing factor. A better understanding of the role of NGF in reproduction would be of great interest, since it could help finding innovative therapeutic aids to improve mammalian fertility.

摘要

导致哺乳动物释放促性腺激素释放激素(GnRH)和垂体促性腺激素并进而引发排卵的刺激因素可分为两大类。第一类,高血浆雌激素浓度引发触发排卵的一系列事件,这是自发排卵动物的特征。第二类,交配过程中产生的神经刺激到达下丘脑,并通过一种神经内分泌反射触发GnRH释放和排卵,这是诱导排卵动物的特征。在本综述中,我们将概述神经生长因子(NGF)的分布及其在雄性附属性腺不同组织中的表达,这些组织是NGF产生的主要部位。接下来,我们将强调NGF在精子功能中的作用及其在人工授精技术中的潜在冷冻保存作用。最后,我们将评估NGF在排卵中的功能,特别是在诱导排卵动物中的功能。总体而言,目前获得的信息表明,NGF广泛分布于调节生殖活动的器官中,包括雄性和雌性。在自发排卵动物中,NGF主要发挥黄体营养作用,而在诱导排卵动物中,它是主要的排卵诱导因子。更好地理解NGF在生殖中的作用将非常有意义,因为这有助于找到创新的治疗辅助手段来提高哺乳动物的生育能力。

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