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多囊卵巢综合征中的选择性胰岛素抵抗

Selective insulin resistance in the polycystic ovary syndrome.

作者信息

Book C B, Dunaif A

机构信息

Department of Medicine, Pennsylvania State University College of Medicine, Hershey 17033, USA.

出版信息

J Clin Endocrinol Metab. 1999 Sep;84(9):3110-6. doi: 10.1210/jcem.84.9.6010.

Abstract

Polycystic ovary syndrome (PCOS) is characterized by hyperandrogenemia that is amplified by insulin in the presence of resistance to insulin's action to stimulate glucose uptake in muscle and fat. To explore the mechanisms for this paradox, we examined the metabolic and mitogenic actions of insulin and insulin-like growth factor I (IGF-I) in cultured skin fibroblasts from PCOS (n = 16) and control (n = 11) women. There were no significant decreases in the number or affinity of insulin- or IGF-I-binding sites in PCOS compared to control fibroblasts. Basal rates were similar, but there were significant decreases in insulin-stimulated (control, 51.8 +/- 7.0; PCOS, 29.5 +/- 2.9 nmol/10(6) cells x 2 h at 1,000,000 pmol/L; P < 0.005) and IGF-I-stimulated (control, 48.9 +/- 6.7; PCOS, 33.0 +/- 3.2 PCOS nmol/10(6) cells x 2 h at 100,000 pmol/L IGF-I; P < 0.05) glucose incorporation into glycogen in PCOS fibroblasts, a metabolic action of insulin. Stimulation of thymidine incorporation, a mitogenic action of insulin, was similar in PCOS and control fibroblasts in response to both insulin and IGF-I. There were also no significant differences in insulin- or IGF-I-stimulated insulin receptor substrate-1-associated phosphatidylinositol-3-kinase activity in PCOS compared to control fibroblast cells. We conclude that 1) there is a selective defect in insulin action in PCOS fibroblasts that affects metabolic, but not mitogenic, signaling pathways; 2) there is a similar defect in IGF-I action, suggesting that insulin and IGF-I stimulate glycogen synthesis by the same postreceptor pathways; and 3) insulin receptor substrate-1-associated phosphatidylinositol 3-kinase activation by insulin and IGF-I is similar to the control value, suggesting that the metabolic signaling defect is in another pathway or downstream of this signaling step in PCOS fibroblasts.

摘要

多囊卵巢综合征(PCOS)的特征是雄激素过多,在存在胰岛素抵抗(胰岛素刺激肌肉和脂肪摄取葡萄糖的作用受到抵抗)的情况下,胰岛素会加剧这种情况。为了探究这一矛盾现象的机制,我们检测了来自PCOS女性(n = 16)和对照女性(n = 11)的培养皮肤成纤维细胞中胰岛素和胰岛素样生长因子I(IGF-I)的代谢及促有丝分裂作用。与对照成纤维细胞相比,PCOS成纤维细胞中胰岛素或IGF-I结合位点的数量及亲和力没有显著降低。基础速率相似,但在PCOS成纤维细胞中,胰岛素刺激的(对照为51.8±7.0;PCOS为29.5±2.9 nmol/10⁶细胞×2小时,胰岛素浓度为1,000,000 pmol/L;P < 0.005)和IGF-I刺激的(对照为48.9±6.7;PCOS为33.0±3.2 PCOS nmol/10⁶细胞×2小时,IGF-I浓度为100,000 pmol/L;P < 0.05)葡萄糖掺入糖原的过程显著降低,这是胰岛素的一种代谢作用。胰岛素的促有丝分裂作用即刺激胸腺嘧啶掺入,在PCOS和对照成纤维细胞中对胰岛素和IGF-I的反应相似。与对照成纤维细胞相比,PCOS成纤维细胞中胰岛素或IGF-I刺激的胰岛素受体底物-1相关磷脂酰肌醇-3-激酶活性也没有显著差异。我们得出以下结论:1)PCOS成纤维细胞中胰岛素作用存在选择性缺陷,影响代谢信号通路,但不影响促有丝分裂信号通路;2)IGF-I作用存在类似缺陷;这表明胰岛素和IGF-I通过相同的受体后途径刺激糖原合成;3)胰岛素和IGF-I激活的胰岛素受体底物-1相关磷脂酰肌醇3-激酶与对照值相似,这表明PCOS成纤维细胞中的代谢信号缺陷存在于该信号步骤的另一条途径或下游。

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