Basini Giuseppina, Bussolati Simona, Ciccimarra Roberta, Grasselli Francesca
Dipartimento di Scienze Medico-Veterinarie, Università degli Studi di Parma, Via del Taglio 10, 43126 Parma, Italy.
Reprod Fertil Dev. 2017 Nov;29(12):2305-2312. doi: 10.1071/RD16513.
Melatonin exerts well-known reproductive effects, mainly acting on hypothalamic gonadotrophin-releasing hormone release. More recent data suggest that melatonin acts directly at the ovarian level, even if, at present, these aspects have been only partly investigated. Swine follicular fluid contains melatonin and its concentration is significantly reduced during follicular growth. Therefore, the present study was undertaken to examine the effects of melatonin, used at physiological concentrations, on cultured swine granulosa cells collected from small (<3mm) and large (>5mm) follicles on the main parameters of granulosa cell function such as proliferation and steroidogenesis, namely oestradiol 17β and progesterone (P4) production. Moreover, the effects of melatonin on superoxide anion and nitric oxide (NO) generation by swine granulosa cells were also investigated. Finally, since angiogenesis is crucial for follicle growth, the effects of melatonin on new vessel growth were studied. Collected data indicate that melatonin interferes with cultured granulosa cell proliferation and steroidogenesis, specifically in terms of P4 production and NO output. In addition, the events of physiological follicular angiogenesis were stimulated by melatonin as evidenced by angiogenesis bioassay. Therefore, we suggest that physiological melatonin concentrations could potentially be involved in local modulation of swine ovarian follicle function.
褪黑素具有众所周知的生殖作用,主要作用于下丘脑促性腺激素释放激素的释放。最新数据表明,褪黑素即使目前仅部分得到研究,也可直接作用于卵巢水平。猪卵泡液中含有褪黑素,且其浓度在卵泡生长过程中显著降低。因此,本研究旨在检测生理浓度的褪黑素对从小卵泡(<3mm)和大卵泡(>5mm)收集的培养猪颗粒细胞的颗粒细胞功能主要参数(如增殖和类固醇生成,即17β-雌二醇和孕酮(P4)产生)的影响。此外,还研究了褪黑素对猪颗粒细胞产生超氧阴离子和一氧化氮(NO)的影响。最后,由于血管生成对卵泡生长至关重要,因此研究了褪黑素对新血管生长的影响。收集的数据表明,褪黑素会干扰培养的颗粒细胞增殖和类固醇生成,特别是在P4产生和NO输出方面。此外,血管生成生物测定证明,褪黑素刺激了生理性卵泡血管生成事件。因此,我们认为生理浓度的褪黑素可能参与猪卵巢卵泡功能的局部调节。