首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Mitogenic effects of growth hormone in cultured human fibroblasts. Evidence for action via local insulin-like growth factor I production.
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Mitogenic effects of growth hormone in cultured human fibroblasts. Evidence for action via local insulin-like growth factor I production.

机译:生长激素在培养的人成纤维细胞中的促成丝作用。通过局部胰岛素样生长因子I产生作用的证据。

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摘要

We examined human growth hormone's (hGH) effect on mitogenesis in cultured human fibroblasts, and the role of local insulin-like growth factor I (IGF-I). With 0.5% human hypopituitary serum (HPS), hGH increased thymidine incorporation (TI) over serum-free medium dose responsively, with half-maximal effect at 10 ng/ml (0.5 nM) (hGH 127 +/- 8.8%; IGF-I 107 +/- 1.7% [SEM]) (n = 10). Similarly, with 0.5% HPS, hGH and IGF-I increased cell replication by 172 +/- 8.2% and 169 +/- 25%, respectively (n = 4). Specific IGF-I monoclonal antibody (Sm1.2) dose dependently blunted TI stimulated by 10 ng/ml hGH or IGF-I (at 1:1000, 38 +/- 6.5% and 30 +/- 14% reduction, respectively). Sm1.2 also reduced cell replication by both 10 ng/ml hGH and IGF-I, respectively, to 32% and 42% of stimulated values. Dexamethasone (0.1 microM) synergistically enhanced TI by both IGF-I and hGH. A 28-h time course for TI showed that hGH stimulated a similar peak to IGF-I, lagging in its effect by 4-10 h. We have provided further evidence that hGH stimulates growth of cultured human fibroblasts via local IGF-I production, consistent with IGF-I's paracrine-autocrine role.
机译:我们检查了人类生长激素(hGH)对培养的人类成纤维细胞有丝分裂的影响,以及局部胰岛素样生长因子I(IGF-1)的作用。使用0.5%的人垂体血清(HPS),hGH较无血清的培养基剂量反应性地增加了胸腺嘧啶核苷的掺入(TI),其最大作用为10 ng / ml(0.5 nM)(hGH 127 +/- 8.8%; IGF- I 107 +/- 1.7%[SEM])(n = 10)。类似地,使用0.5%的HPS,hGH和IGF-1分别使细胞复制增加172 +/- 8.2%和169 +/- 25%(n = 4)。特定的IGF-1单克隆抗体(Sm1.2)剂量依赖性地减弱了10 ng / ml hGH或IGF-1刺激的TI(分别以1:1000、38 +/- 6.5%和30 +/- 14%降低)。 Sm1.2还分别将细胞复制降低了10 ng / ml hGH和IGF-1,降至刺激值的32%和42%。地塞米松(0.1 microM)通过IGF-I和hGH协同增强了TI。 TI的28小时时程表明,hGH刺激了与IGF-I相似的峰,其作用落后4-10 h。我们提供了进一步的证据,表明hGH通过局部IGF-I产生刺激了培养的人成纤维细胞的生长,这与IGF-I的旁分泌-自分泌作用一致。

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