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转化生长因子β增强大鼠颗粒细胞在体外基础状态下及促卵泡激素刺激下的抑制素分泌。

Transforming growth factor beta enhances basal and FSH-stimulated inhibin production by rat granulosa cells in vitro.

作者信息

Zhang Z W, Findlay J K, Carson R S, Herington A C, Burger H G

机构信息

Medical Research Centre, Prince Henry's Hospital, Melbourne, Victoria, Australia.

出版信息

Mol Cell Endocrinol. 1988 Aug;58(2-3):161-6. doi: 10.1016/0303-7207(88)90150-5.

Abstract

Transforming growth factor beta (TGF beta) caused a dose-dependent increase in both basal and follicle-stimulating hormone (FSH)-stimulated inhibin production by rat granulosa cells in culture. The TGF beta dose-response curve in the absence of FSH was approximately parallel to that in the presence of either a minimally effective dose (1 ng/ml) or a maximally effective dose (30 ng/ml) of FSH, suggesting an additive effect of these two agents on inhibin production. There was also a suggestion of an increased sensitivity of granulosa cell inhibin production to FSH when the cells were coincubated with TGF beta. The time course study showed that similar to FSH, the stimulatory effect of TGF beta on basal and FSH-stimulated inhibin production was evident on day 1 and was maximal by day 4. In addition, epidermal growth factor (EGF) reduced FSH-stimulated inhibin production with an ID50 value of 1.3 ng/ml. Coincubation of cells with EGF and 1 ng TGF beta/ml enhanced greatly the inhibitory action of EGF on FSH-induced inhibin production (ID50 less than 0.1 ng/ml). It is concluded that: (1) TGF beta directly stimulates inhibin production by rat granulosa cells and the combined effect with FSH was largely additive, (2) the inhibitory effect of EGF on FSH-induced inhibin production was enhanced by TGF beta, (3) individual members of the TGF beta/inhibin gene family regulate ovarian function, not only by direct action on follicle cells but also indirectly by influencing the production rate of other members of that family.

摘要

转化生长因子β(TGFβ)使培养的大鼠颗粒细胞基础和促卵泡激素(FSH)刺激的抑制素产生呈剂量依赖性增加。在无FSH情况下,TGFβ的剂量反应曲线与存在最低有效剂量(1 ng/ml)或最高有效剂量(30 ng/ml)FSH时的曲线大致平行,表明这两种因子对抑制素产生具有相加作用。当颗粒细胞与TGFβ共同孵育时,还提示颗粒细胞抑制素产生对FSH的敏感性增加。时间进程研究表明,与FSH相似,TGFβ对基础和FSH刺激的抑制素产生的刺激作用在第1天明显,第4天达到最大。此外,表皮生长因子(EGF)降低FSH刺激的抑制素产生,半数抑制浓度(ID50)值为1.3 ng/ml。细胞与EGF和1 ng/ml TGFβ共同孵育极大地增强了EGF对FSH诱导的抑制素产生的抑制作用(ID50小于0.1 ng/ml)。得出以下结论:(1)TGFβ直接刺激大鼠颗粒细胞产生抑制素,与FSH的联合作用在很大程度上是相加的;(2)TGFβ增强了EGF对FSH诱导的抑制素产生的抑制作用;(3)TGFβ/抑制素基因家族的各个成员调节卵巢功能,不仅通过直接作用于卵泡细胞,还通过影响该家族其他成员的产生速率间接发挥作用。

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