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首页> 外文期刊>Molecular and Cellular Endocrinology >Transforming growth factor beta1 inhibits steroidogenesis in dispersed fetal testicular cells in culture.
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Transforming growth factor beta1 inhibits steroidogenesis in dispersed fetal testicular cells in culture.

机译:转化生长因子β1抑制培养中的胎儿胎儿睾丸细胞中的类固醇生成。

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摘要

TGF beta1 has been detected by immunohistochemistry in the rat fetal testis. Therefore, we attempted to determine whether this factor can act as a local regulator of Leydig cell function during fetal development. An inhibitory effect of TGF beta1 on basal and luteinizing hormone (LH)-stimulated testosterone secretion by fetal testes in vitro was observed only with testes from 13.5 day-old fetuses and not with testes from older stages. The lack of effect of exogenous TGF beta1 in organ culture after day 13.5 might be related to an elevated intratesticular concentration that would already exert maximal biological effect. On the contrary, in a model of dispersed testicular cells in culture, TGF beta1 was able to inhibit LH-stimulated testosterone production by fetal Leydig cells from 16.5 and 20.5 day-old fetuses. This inhibition of LH-stimulated testosterone production was dose- and time-dependent and was maximal after 48 h of treatment with 1 ng/ml TGF beta1, with testosterone secretion being reduced to25% of control values. Inhibition of testosterone secretion was also observed in basal and dbcAMP-stimulated conditions, suggesting that one site of action of TGF beta1 is located after the production of cAMP. However, TGF beta1 was also able to inhibit LH-induced cAMP production. As demonstrated by the transformation of steroidogenic precursors into testosterone, TGF beta1 did not significantly alter 3beta-hydroxysteroid dehydrogenase (3beta HSD) activity but induced a strong inhibition of cytochrome P450 17alpha-hydroxylase/C17-20 lyase (P450C17) activity which was associated with a marked diminution of cytochrome P450C17 mRNA levels (26% of control values) but not of cytochrome P450scc mRNA. In addition to its effect on steroidogenesis, TGF beta1 exhibited morphogenic actions on the fetal testicular cells, inducing spreading when the cells were adherent and aggregation when the cells were cultured in conditions of lesser adherence and without any significant effect on either total cell number or 3beta HSD positive cells. Taken together these results suggest that TGF beta1 likely plays a morphogenic and physiological role very early in the fetal testis via paracrine/autocrine mechanisms.
机译:已通过免疫组织化学在大鼠胎儿睾丸中检测到TGF beta1。因此,我们试图确定该因素是否可以在胎儿发育过程中充当Leydig细胞功能的局部调节剂。仅在13.5日龄胎儿的睾丸中观察到TGF beta1对体外受胎睾丸的基础和黄体生成激素(LH)刺激的睾丸激素分泌的抑制作用,而对较早阶段的睾丸则没有抑制作用。在第13.5天后器官培养物中缺乏外源性TGFβ1的作用可能与已经发挥最大生物学作用的睾丸内浓度升高有关。相反,在培养的睾丸细胞分散模型中,TGF beta1能够抑制16.5和20.5日龄胎儿的Leydig细胞产生的LH刺激的睾丸激素。 LH刺激的睾丸激素产生的这种抑制作用是剂量和时间依赖性的,并且在用1 ng / ml TGFβ1治疗48小时后达到最大,而睾丸激素的分泌减少到对照值的25%。在基础和dbcAMP刺激的条件下也观察到睾丸激素分泌的抑制作用,这表明TGF beta1的一个作用位点位于cAMP产生后。但是,TGF beta1也能够抑制LH诱导的cAMP产生。正如类固醇生成前体转化为睾丸激素所证明的那样,TGF beta1不会显着改变3beta-羟类固醇脱氢酶(3beta HSD)的活性,但诱导了对细胞色素P450 17alpha-羟化酶/ C17-20裂解酶(P450C17)活性的强烈抑制。细胞色素P450C17 mRNA水平显着降低(占对照值的26%),而细胞色素P450scc mRNA没有显着降低。除了对类固醇生成有影响外,TGF beta1还对胎儿的睾丸细胞表现出形态发生作用,当细胞粘附时诱导其扩散,而在粘附性较低的条件下培养时则诱导聚集,并且对总细胞数或3beta均无明显影响HSD阳性细胞。总之,这些结果表明,TGFβ1可能通过旁分泌/自分泌机制在胎儿睾丸中很早地发挥形态发生和生理作用。

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