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来自大鼠三个脂肪储存部位的脂肪细胞的葡萄糖代谢变化。

Variations of glucose metabolism by fat cells from three adipose depots of the rat.

作者信息

Fried S K, Lavau M, Pi-Sunyer F X

出版信息

Metabolism. 1982 Sep;31(9):876-83. doi: 10.1016/0026-0495(82)90176-7.

Abstract

Fat cells isolated from the epididymal (E) and dorsal subcutaneous (S) depots from 150g male Wistar rats were similar in size, but differed markedly in glucose metabolism. Retroperitoneal (RP) fat cells were slightly larger but were metabolically similar to epididymal fat cells. Basal incorporation of [1-14C] glucose into fatty acids was lower in S than E and RP, CO2 production and glyceride-glycerol synthesis were similar in all three; and lactate production was increased in RP and S compared to E. S adipocytes exhibited a blunted respond to both submaximally and maximally-stimulating concentrations of insulin compared to RP and E adipocytes in glucose incorporation into fatty acids, CO2 and lactate production, but not glyceride-glycerol. Maximally insulin-stimulated fatty acid synthesis by S fat cells was 19% and 29% of the values in E and RP fat cells respectively. Basal and maximally insulin-stimulated glucose transport (2-deoxy [14C] glucose uptake) was depressed by 30%-40% in S cells compared to E and RP. Thus, the decreased basal glucose utilization of S could be attributed primarily to a decreased glucose transport capacity. The markedly lower insulin-stimulated glucose metabolism in S fat cells, however, may be explained by alterations of the capacities for both transport and intracellular metabolism. Subcutaneous fat cells were also somewhat less sensitive to submaximal doses of insulin and this was reflected in rightward shift in the dose-response curves for 2-deoxyglucose uptake and fatty acid synthesis. The decreases in insulin stimulated glucose oxidation and fatty acid synthesis were paralleled by decreases in the major lipogenic enzymes. Although the reason for these variations in the capacity for glucose metabolism among depots is unknown, they are important in assessing the metabolic function of the whole adipose organ.

摘要

从150克雄性Wistar大鼠的附睾(E)和背部皮下(S)脂肪库分离出的脂肪细胞大小相似,但在葡萄糖代谢方面存在显著差异。腹膜后(RP)脂肪细胞稍大,但在代谢上与附睾脂肪细胞相似。[1-14C]葡萄糖向脂肪酸的基础掺入量在S中低于E和RP,二氧化碳产生和甘油酯-甘油合成在三者中相似;与E相比,RP和S中的乳酸产生增加。与RP和E脂肪细胞相比,S脂肪细胞在将葡萄糖掺入脂肪酸、二氧化碳和乳酸产生方面,对次最大和最大刺激浓度的胰岛素反应迟钝,但甘油酯-甘油合成方面无差异。S脂肪细胞在最大胰岛素刺激下的脂肪酸合成分别为E和RP脂肪细胞中值的19%和29%。与E和RP相比,S细胞中基础和最大胰岛素刺激的葡萄糖转运(2-脱氧[14C]葡萄糖摄取)降低了30%-40%。因此,S中基础葡萄糖利用率的降低主要可归因于葡萄糖转运能力的下降。然而,S脂肪细胞中胰岛素刺激的葡萄糖代谢明显较低,可能是由于转运和细胞内代谢能力的改变。皮下脂肪细胞对次最大剂量胰岛素也稍不敏感,这反映在2-脱氧葡萄糖摄取和脂肪酸合成的剂量反应曲线向右移动。胰岛素刺激的葡萄糖氧化和脂肪酸合成的减少与主要脂肪生成酶的减少平行。尽管各脂肪库之间葡萄糖代谢能力存在这些差异的原因尚不清楚,但它们对于评估整个脂肪器官的代谢功能很重要。

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