Cannarella Rossella, Mancuso Francesca, Condorelli Rosita A, Arato Iva, Mongioì Laura M, Giacone Filippo, Lilli Cinzia, Bellucci Catia, La Vignera Sandro, Calafiore Riccardo, Luca Giovanni, Calogero Aldo E
Department of Clinical and Experimental Medicine, University of Catania, 95123 Catania, Italy.
Department of Experimental Medicine, University of Perugia, 06132 Perugia, Italy.
J Clin Med. 2019 Jun 6;8(6):811. doi: 10.3390/jcm8060811.
Several lines of evidence suggest that insulin-like growth factor 1 (IGF1) is involved in Sertoli cell (SC) proliferation and that its receptor (IGF1R) could mediate follicle-stimulating hormone (FSH) effects. To examine the role of the growth hormone (GH)-IGF1 axis on SC function, we evaluated the effects of GH and IGF1 on basal and FSH-modulated SC proliferation, as well as on anti-Müllerian hormone (AMH) and inhibin B expression and secretion in-vitro. SCs from neonatal pigs were incubated with (1) placebo, (2) 100 nM highly purified urofollitropin (hpFSH), (3) 100 nM recombinant GH (rGH), (4) 100 nM recombinant IGF1 (rIGF1), (5) 100 nM hpFSH plus 100 nM rGH, (6) 100 nM hpFSH plus 100 nM rIGF1, for 48 h. We found that IGF1, but not FSH nor GH, stimulated SC proliferation. Furthermore, an inhibitory effect of FSH, GH and IGF1 on AMH secretion, and a stimulatory role of FSH and IGF1, but not GH, on inhibin B secretion were found. These results suggest that the GH-IGF1 axis influences basal and FSH-modulated SC proliferation and function. We speculate that SC proliferation occurring in childhood might be supported by the increased serum IGF1 levels observed during this period of life.
多条证据表明,胰岛素样生长因子1(IGF1)参与支持细胞(SC)增殖,且其受体(IGF1R)可能介导促卵泡激素(FSH)的作用。为研究生长激素(GH)-IGF1轴对支持细胞功能的作用,我们在体外评估了GH和IGF1对基础状态及FSH调节的支持细胞增殖的影响,以及对抗苗勒管激素(AMH)和抑制素B表达与分泌的影响。将新生仔猪的支持细胞与以下物质孵育48小时:(1)安慰剂;(2)100 nM高纯度尿促卵泡素(hpFSH);(3)100 nM重组生长激素(rGH);(4)100 nM重组胰岛素样生长因子1(rIGF1);(5)100 nM hpFSH加100 nM rGH;(6)100 nM hpFSH加100 nM rIGF1。我们发现,刺激支持细胞增殖的是IGF1,而非FSH或GH。此外,还发现FSH、GH和IGF1对AMH分泌有抑制作用,FSH和IGF1对抑制素B分泌有刺激作用,而GH无此作用。这些结果表明,GH-IGF1轴影响基础状态及FSH调节的支持细胞增殖和功能。我们推测,儿童期支持细胞的增殖可能受到该时期血清IGF1水平升高的支持。