首页> 外文期刊>Developmental biology >Stem cell factor functions as a survival factor for mature Leydig cells and a growth factor for precursor Leydig cells after ethylene dimethane sulfonate treatment: Implication of a role of the stem cell factor/c-kit system in Leydig cell development
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Stem cell factor functions as a survival factor for mature Leydig cells and a growth factor for precursor Leydig cells after ethylene dimethane sulfonate treatment: Implication of a role of the stem cell factor/c-kit system in Leydig cell development

机译:干细胞因子在乙烯二甲磺酸盐处理后充当成熟Leydig细胞的生存因子和前体Leydig细胞的生长因子:干细胞因子/ c-kit系统在Leydig细胞发育中的作用

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The significance of the interaction between Sertoli cell-produced stem cell factor (SCF) and its receptor, c-kit, on Leydig cells (LCs) during LC development and differentiation is unknown. In the present study, we investigated the potential role of the SCF/c-kit system in LC apoptosis and precursor LC proliferation after ethylene dimethane sulfonate (EDS) treatment in rats. A function-blocking anti-c-kit antibody, ACK-2, was used to block SCF/c-kit interaction at four time points, corresponding to the peak of LC apoptosis and three waves of proliferation of precursor LCs. Blockade of SCF/c-kit interaction by ACK-2 accelerated LC apoptosis and inhibited proliferation of precursor LCs during the first two waves of precursor LC proliferation around days 3-4 and day 10, but not the third wave of precursor LC proliferation around day 20 after EDS treatment. The data suggest that the soluble SCF might act as a survival factor for mature LCs and a growth factor for precursor LCs after EDS-induced LC depletion. This is also supported by a close correlation between the oscillating levels of soluble SCF mRNA and the profiles of LC apoptosis and regeneration. Since regeneration of the LC population after EDS treatment resembles the development of adult-type LCs during prepubertal life, the present findings imply that soluble SCE might participate in regulation of the formation of the LC population during testicular development. Our data also support a model in which delicate and reciprocal regulation exists between soluble SCE production by Sertoli cells, testosterone production by LCs, and pituitary gonadotropins. (C) 2000 Academic Press. [References: 42]
机译:在LC发育和分化过程中,支持细胞产生的干细胞因子(SCF)及其受体c-kit在Leydig细胞(LC)上相互作用的重要性尚不清楚。在本研究中,我们调查了SCF / c-kit系统在大鼠乙二甲烷磺酸盐(EDS)处理后LC细胞凋亡和前体LC增殖中的潜在作用。使用功能阻断型抗c-kit抗体ACK-2在四个时间点阻断SCF / c-kit相互作用,这对应于LC细胞凋亡的峰值和前体LC的三波增殖。 ACK-2阻断SCF / c-kit相互作用加速了LC凋亡,并在3-4天和10天左右的前两次LC增殖的前两次浪潮中抑制了LC的增殖,但没有第三天左右的LC扩散的第三次浪潮。 EDS处理后20。数据表明,EDS诱导的LC耗尽后,可溶性SCF可能充当成熟LC的生存因子和前体LC的生长因子。可溶性SCF mRNA的振荡水平与LC细胞凋亡和再生情况之间的密切相关性也支持了这一点。由于EDS处理后LC群体的再生类似于青春期前成人LC的发育,因此本研究结果表明可溶性SCE可能参与睾丸发育过程中LC群体的形成调控。我们的数据还支持一种模型,其中在支持细胞产生的可溶性SCE,LC产生的睾丸激素和垂体促性腺激素之间存在微妙和相互调节。 (C)2000学术出版社。 [参考:42]

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