Basini Giuseppina, Grasselli Francesca
Dipartimento di Scienze Medico-VeterinarieUniversità degli Studi di Parma, Via del Taglio 10, I-43126 Parma, Italy
Dipartimento di Scienze Medico-VeterinarieUniversità degli Studi di Parma, Via del Taglio 10, I-43126 Parma, Italy.
Reproduction. 2015 Jul;150(1):R1-9. doi: 10.1530/REP-14-0524. Epub 2015 Mar 19.
Apart from its well-known role in regulating endothelial function, in mammals, nitric oxide (NO) is an important signaling molecule involved in many processes, regulating different biological functions. It has been demonstrated that NO plays a role in the physiology of the reproductive system, where it acts in controlling the activity of reproductive organs in both sexes. In the female of several animal species, experimental data suggest the presence of an intraovarian NO-generating system, which could be involved in the control of follicular development. The role of NO in regulating follicular atresia by apoptosis is still controversial, as a dual action depending mostly on its concentration has been documented. NO also displays positive effects on follicle development and selection related to angiogenic events and it could also play a modulatory role in steroidogenesis in ovarian cells. Both in monovulatory and poliovulatory species, the increase in PGE2 production induced by NO via a stimulatory effect on COX-2 activity appears to be a common ovulatory mechanism. Considerable evidence also exists to support an involvement of the NO/NO synthase system in the control of meiotic maturation of cumulus-oocyte complexes.
除了在调节内皮功能方面的著名作用外,在哺乳动物中,一氧化氮(NO)是一种参与许多过程的重要信号分子,调节着不同的生物学功能。已经证明,NO在生殖系统的生理学中发挥作用,在两性中它都参与控制生殖器官的活动。在几种动物的雌性中,实验数据表明存在卵巢内NO生成系统,其可能参与卵泡发育的控制。NO通过凋亡调节卵泡闭锁的作用仍存在争议,因为已记录到其双重作用主要取决于其浓度。NO对与血管生成事件相关的卵泡发育和选择也有积极作用,并且它也可能在卵巢细胞的类固醇生成中起调节作用。在单排卵和多排卵物种中,NO通过对COX-2活性的刺激作用诱导PGE2产生增加,这似乎是一种常见的排卵机制。也有相当多的证据支持NO/NO合酶系统参与卵丘-卵母细胞复合体减数分裂成熟的控制。