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雌性大鼠与雄性大鼠脂肪细胞中胰岛素敏感性增加及葡萄糖代谢反应性增强。

Increased insulin sensitivity and responsiveness of glucose metabolism in adipocytes from female versus male rats.

作者信息

Guerre-Millo M, Leturque A, Girard J, Lavau M

出版信息

J Clin Invest. 1985 Jul;76(1):109-16. doi: 10.1172/JCI111932.

Abstract

This study was undertaken to examine whether there were sex-associated differences in the action of insulin on glucose metabolism in adipocytes. Insulin binding and the dose-response curves for glucose transport (assessed by measuring the cell-associated radioactivity after 15-s incubation with 50 microM [6-14C]glucose) and [U-14C]glucose (5 mM) metabolism into CO2 and lipids were compared in retroperitoneal adipocytes from age-matched (84 d) male and female rats. In addition, the activity of fatty acid synthetase, one of the key lipogenic enzymes, was determined. Fat cell size was not significantly larger in females than in males (0.238 vs. 0.209 microgram lipid per cell). At insulin concentrations less than or equal to 1.6 nM, adipocytes from females bound significantly more insulin than did adipocytes from males, due to an increased apparent affinity of the receptors for insulin. Accordingly, the sensitivity of glucose transport to insulin was greater in females than in males: insulin concentration eliciting half-maximal stimulation (ED50) = 0.19 nM vs. 0.41 nM. At maximal insulin stimulation the rates of glucose transport (12 times the basal values) were similar in the two sexes. In contrast, the maximal effect of insulin on glucose conversion to CO2 plus lipids was much greater in the adipocytes from females than males (increment over basal: 472 vs. 249 nmol/10(6) cells per 2 h). Fatty acid synthesis contributed approximately 40% of the incremental difference between the two types of adipocytes, while glyceride-glycerol synthesis contributed less than 10%. The insulin dose-response curves for adipocytes from females were shifted to the left for all the metabolic pathways investigated. The mean ED50 for total glucose metabolism in females was 50% of that in males (0.07 nM vs. 0.15 nM). Marked sex-associated differences in the action of insulin on glucose metabolism were also observed in subcutaneous inguinal adipocytes (increment over basal: 137 and 56 nmol/10(6) cells per 2 h, ED50 = 0.13 nM and 0.30 nM in females and males, respectively). The intracellular capacity to metabolize glucose through the fatty acid synthesis pathway, as assessed by FAS activity, was higher in adipocytes from females than in those from males and was greater in retroperitoneal than in inguinal adipocytes. Furthermore, by plotting the individual data, a highly significant correlation (r = 0.92, P less than 0.001) was found between the absolute effect of insulin on glucose metabolism at maximal stimulation and the fatty acid synthetase activity of the cells. These results indicate that the response of glucose metabolism to insulin in adipocytes from female as compared with male rats is characterized by two main features: (a) an increased sensitivity primarily due to an increase in insulin binding, and (b) an increased responsiveness closely associated with a postreceptor increase in the lipogenic capacity of the cell. These findings might be relevant to the differential disposition of male and female rats to develop fatness.

摘要

本研究旨在探讨脂肪细胞中胰岛素对葡萄糖代谢的作用是否存在性别相关差异。比较了年龄匹配(84日龄)的雄性和雌性大鼠腹膜后脂肪细胞的胰岛素结合情况以及葡萄糖转运(通过与50微摩尔[6-14C]葡萄糖孵育15秒后测量细胞相关放射性来评估)和[U-14C]葡萄糖(5毫摩尔)代谢为二氧化碳和脂质的剂量反应曲线。此外,还测定了关键脂肪生成酶之一脂肪酸合成酶的活性。雌性脂肪细胞大小并不显著大于雄性(每细胞脂质含量分别为0.238微克和0.209微克)。在胰岛素浓度小于或等于1.6纳摩尔时,雌性脂肪细胞比雄性脂肪细胞结合的胰岛素显著更多,这是由于受体对胰岛素的表观亲和力增加。因此,雌性脂肪细胞对胰岛素的葡萄糖转运敏感性高于雄性:引起半数最大刺激的胰岛素浓度(ED50)分别为0.19纳摩尔和0.41纳摩尔。在最大胰岛素刺激下,两性的葡萄糖转运速率(为基础值的12倍)相似。相比之下,胰岛素对葡萄糖转化为二氧化碳加脂质的最大作用在雌性脂肪细胞中比雄性大得多(相对于基础值的增加量:每2小时每10^6个细胞472纳摩尔对249纳摩尔)。脂肪酸合成约占两种类型脂肪细胞增量差异的40%,而甘油三酯合成贡献小于10%。雌性脂肪细胞在所有研究的代谢途径中的胰岛素剂量反应曲线均向左移动。雌性总葡萄糖代谢的平均ED50为雄性的50%(0.07纳摩尔对0.15纳摩尔)。在皮下腹股沟脂肪细胞中也观察到胰岛素对葡萄糖代谢作用的明显性别相关差异(相对于基础值的增加量:每2小时每10^6个细胞分别为137纳摩尔和56纳摩尔,雌性和雄性的ED50分别为0.13纳摩尔和0.30纳摩尔)。通过脂肪酸合成酶活性评估,雌性脂肪细胞通过脂肪酸合成途径代谢葡萄糖的细胞内能力高于雄性,且腹膜后脂肪细胞高于腹股沟脂肪细胞。此外,通过绘制个体数据发现,最大刺激时胰岛素对葡萄糖代谢的绝对作用与细胞的脂肪酸合成酶活性之间存在高度显著的相关性(r = 0.92,P < 0.001)。这些结果表明,与雄性大鼠相比,雌性大鼠脂肪细胞中葡萄糖代谢对胰岛素的反应具有两个主要特征:(a)敏感性增加,主要是由于胰岛素结合增加;(b)反应性增加,与细胞脂肪生成能力受体后增加密切相关。这些发现可能与雄性和雌性大鼠发生肥胖的不同倾向有关。

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