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Paracrine Regulation of Steroidogenesis in Theca Cells by Granulosa Cells Derived from Mouse Preantral Follicles

机译:小鼠前壁卵泡中的颗粒细胞在Theca细胞中类固醇的旁分泌调节

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Interaction partners of follicular cells play a significant role in steroidogenesis, follicular formation, and development. Androgen secreted by theca cells (TCs) can initiate follicle development and ovulation and provide precursor materials for estrogen synthesis. Therefore, studies on ovarian microenvironment will not only lead to better understanding of the steroidogenesis but also have clinical significance for ovarian endocrine abnormalities such as hyperandrogenism in polycystic ovary syndrome (PCOS). This study applied the Transwell coculture model to investigate if the interaction between granulosa and theca cells may affect androgen production in theca cells. Concentrations of testosterone and androstenedione in the spent medium were measured by radioimmunoassay and enzyme linked immunosorbent assay, respectively. The results show that the coculture with granulosa cells (GCs) increases steroidogenesis in TCs. In addition, testosterone and androstenedione productions in response to LH stimulation were also increased in the coculture model. Significantly increased mRNA expressions of steroidogenic enzymes (Star,Cyp11a1,Cyp17a1, andHsd3b2) were observed in the cocultured TCs. Thus, GCs were capable of promoting steroidogenesis and LH responsiveness in TCs. This study provided a basis for further exploration of ovarian endocrine mechanism and pathologies.
机译:滤泡细胞的相互作用伙伴在类固醇生成,滤泡形成和发育中起重要作用。卵泡膜细胞(TCs)分泌的雄激素可以启动卵泡发育和排卵,并为雌激素合成提供前体物质。因此,对卵巢微环境的研究不仅将使人们更好地了解类固醇生成,而且对卵巢内分泌异常(如多囊卵巢综合征(PCOS)中的雄激素过多)具有临床意义。这项研究应用Transwell共培养模型来研究颗粒和卵泡膜细胞之间的相互作用是否会影响卵泡膜细胞中雄激素的产生。用放射免疫法和酶联免疫吸附法分别测定废培养基中睾丸激素和雄烯二酮的浓度。结果表明,与颗粒细胞(GCs)的共培养增加了TCs中的类固醇生成。另外,在共培养模型中,响应LH刺激的睾丸激素和雄烯二酮的产量也增加了。在共培养的TC中观察到类固醇生成酶(Star,Cyp11a1,Cyp17a1和Hsd3b2)的mRNA表达显着增加。因此,GC能够促进TC中的类固醇生成和LH反应。该研究为进一步探索卵巢内分泌的机制和病理学奠定了基础。

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