[The effects of GnRH agonist on steroidogenesis in the rat ovary].

N Yago
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引用次数: 2

Abstract

The effects of GnRH agonist (buserelin) on in vitro ovarian steroidogenesis were studied using DES-treated immature rats and PMS-treated immature rats. The estradiol and progesterone secreted by the cultured ovarian cells and the activities of various enzymes of steroid-metabolism were examined with or without gonadotropins (FSH or hCG), and the effects of 10(-6)-10(-12) M of buserelin on those indices were observed for 3-72 hours. In addition, the kinetic study of ovarian GnRH receptor was performed using 125I-labelled buserelin and crude ovarian cell membrane fraction of PMS-treated rats. The Scatchard analysis revealed the specific high affinity and low capacity ovarian GnRH receptor (Kd = 0.92 nM and Bmax = 0.57 fmol/mg tissue). The FSH-stimulated cholesterol side chain cleavage enzyme (CSCC) activity of the DES-treated rats was suppressed in a dose-dependent manner by buserelin. Estradiol release and aromatase activity were increased by 10(-8) M buserelin within 48 hours from the beginning of the incubation of the PMS-treated rat ovarian cells, but were suppressed after 48 hours. Buserelin increased basal progesterone secretion and both activities of CSCC and of 3 beta-hydroxysteroid dehydrogenase of PMS-treated rat ovarian cells incubated without hCG, which were suppressed by buserelin co-incubated with 100 IU/ml of hCG. These results suggested that GnRH plays a physiological role in ovarian steroidogenesis binding the specific receptor and that GnRH promotes the development of the follicle through increased estrogen synthesis in the early stage of the folliculogenesis and the luteinization in the late stage of the follicular development through increased progesterone and decreased estradiol production and the luteolysis in the luteinized cells by hCG through decreased progesterone secretion.

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[GnRH激动剂对大鼠卵巢类固醇生成的影响]。
采用des处理的未成熟大鼠和经pms处理的未成熟大鼠,研究GnRH激动剂(buserelin)对体外卵巢甾体生成的影响。用促性腺激素(FSH或hCG)或不加促性腺激素(FSH或hCG)对培养的卵巢细胞分泌雌二醇、黄体酮及各种类固醇代谢酶的活性进行检测,并观察10(-6)-10(-12)M布丝林对这些指标的影响,观察时间为3 ~ 72 h。此外,使用125i标记的布丝林和经pms处理的大鼠卵巢粗细胞膜组分对卵巢GnRH受体进行动力学研究。Scatchard分析显示特异性高亲和低容量卵巢GnRH受体(Kd = 0.92 nM, Bmax = 0.57 fmol/mg组织)。粗丝芹素抑制fsh刺激的des大鼠胆固醇侧链裂解酶(CSCC)活性呈剂量依赖性。经pms处理的大鼠卵巢细胞孵育48小时内雌二醇释放量和芳香化酶活性增加10(-8)M buserelin,但48小时后被抑制。在不加hCG的情况下,经pms处理的大鼠卵巢细胞CSCC和3 β -羟基类固醇脱氢酶的活性均被Buserelin与100 IU/ml hCG共孵育抑制,而Buserelin则增加了基础孕酮的分泌,增加了CSCC和3 β -羟基类固醇脱氢酶的活性。上述结果提示,GnRH结合特异性受体在卵巢甾体生成中发挥生理作用,GnRH通过增加孕酮和减少雌二醇的产生,促进卵泡发生早期雌激素的合成和卵泡发育后期黄体的生成,hCG通过减少孕酮分泌促进黄体化细胞的黄体溶解,从而促进卵泡发育。
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