Hormone-stimulated secretion of luteinization factor in porcine granulosa cells

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Hormone-stimulated secretion of luteinization factor in porcine granulosa cells.

Luteinization stimulator (LS) is an intrafollicular compound which was shown to be released by granulosa cells under in vitro conditions with stimulatory effects on immature granulosa cell differentiation. This study was undertaken to determine the effects of various endocrine agents which are involved in the regulation of ovarian function on LS secretion by porcine granulosa cells isolated fro...

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Luteinization factor-stimulated steroidogenesis in porcine granulosa cells.

Luteinization stimulator (LS), an intrafollicular compound of preovulatory (5-8 mm) follicles, increased both the basal and gonadotropins-stimulated production of progesterone by immature (1-3 mm) granulosa cells. The mechanism by which LS enhance steroidogenesis was investigated by studying the modulation of progesterone biosynthesis from exogenous cholesterol and pregnenolone in cultured porc...

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Porcine granulosa cells produce a progesterone secretion inhibitory activity.

OBJECTIVE To extend our previous observations of granulosa cell conditioned medium inhibition on basal and FSH-stimulated progesterone secretion by granulosa cells from large porcine antral follicles. METHODS Granulosa cell conditioned media (SGCCM) were obtained from cultures of granulosa cells which were harvested from small porcine antral follicles. SGCCM were fractionated by filtration th...

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Hypoxia Promotes Progesterone Synthesis During Luteinization in Bovine Granulosa Cells

To determine whether hypoxia has an effect on luteinization, we examined the influence of hypoxia on a model of bovine luteinizing and non-luteinizing granulosa cell culture. The granulosa cells were obtained from small antral follicles (≤ 6 mm in diameter). To induce luteinization, the cells were treated for 24 h with insulin (2 µg/ml), forskolin (10 µM) or insulin in combination with forskoli...

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Luteinizing hormone receptor appearance in cultured porcine granulosa cells requires continual presence of follicle-stimulating hormone.

During the differentiation of ovarian granulosa cells, follicle-stimulating hormone (follitropin; FSH) mediates the induction of cell surface receptors for luteinizing hormone (lutropin; LH). Using primary cultures of porcine granulosa cells, we demonstrate that both the induction and maintenance of LH receptors are critically dependent upon the continual presence of FSH. The termination of FSH...

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ژورنال

عنوان ژورنال: Reproduction Nutrition Development

سال: 1992

ISSN: 0926-5287

DOI: 10.1051/rnd:19920212