Spicer L J, Stewart R E
Department of Animal Science, Oklahoma State University, Stillwater 74078, USA.
J Dairy Sci. 1996 May;79(5):813-21. doi: 10.3168/jds.S0022-0302(96)76429-9.
The objective of the present study was to determine the interactions among bST, insulin, and gonadotropins on steroid production by granulosa and thecal cells from bovine follicles. Basal production of estradiol by granulosa cells from small (1 to 5 mm) and large (> or = 8 mm) follicles (expressed as picograms of estradiol per 10(5) cells per 24 h) was not affected by 50 or 300 ng/ml of bST, but 300 ng/ml of bST inhibited estradiol production that was induced by FSH plus insulin in cells from small and large follicles. Progesterone production and proliferation by granulosa cells from large follicles were not affected by 3 to 100 ng/ml of bST. In cultures of thecal cells that exhibited a > 3-fold increase in androstenedione production induced by LH, 3 to 30 ng/ml of bST further increased androstenedione production by 29 to 42%, but cell proliferation and progesterone production were unaffected by bST. In cultures of thecal cells that exhibited a < 2-fold increase in androstenedione production induced by LH, 3 to 30 ng/ml of bST inhibited androstenedione production by 32 to 33% and inhibited cell proliferation by 9 to 13%, but progesterone was unaffected by bST. In summary, only pharmacologic doses of bST inhibited estradiol production by granulosa cells, but physiologic doses of bST altered androstenedione production by thecal cells, which indicated that bST might not have an important role in granulosa cell function but might play a role in thecal cell function in cattle.
本研究的目的是确定牛卵泡颗粒细胞和卵泡膜细胞中,重组牛生长激素(bST)、胰岛素和促性腺激素之间对类固醇生成的相互作用。小卵泡(1至5毫米)和大卵泡(≥8毫米)的颗粒细胞基础雌二醇生成量(以每10⁵个细胞每24小时产生的雌二醇皮克数表示)不受50或300纳克/毫升bST的影响,但300纳克/毫升的bST抑制了小卵泡和大卵泡细胞中由促卵泡激素(FSH)加胰岛素诱导的雌二醇生成。大卵泡颗粒细胞的孕酮生成和增殖不受3至100纳克/毫升bST的影响。在促黄体生成素(LH)诱导雄烯二酮生成增加超过3倍的卵泡膜细胞培养物中,3至30纳克/毫升的bST使雄烯二酮生成进一步增加29%至42%,但细胞增殖和孕酮生成不受bST影响。在LH诱导雄烯二酮生成增加小于2倍的卵泡膜细胞培养物中,3至30纳克/毫升的bST使雄烯二酮生成减少32%至33%,细胞增殖减少9%至13%,但孕酮不受bST影响。总之,只有药理剂量的bST抑制颗粒细胞的雌二醇生成,但生理剂量的bST改变卵泡膜细胞的雄烯二酮生成,这表明bST在牛的颗粒细胞功能中可能不起重要作用,但可能在卵泡膜细胞功能中发挥作用。