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二氮嗪下调Zucker大鼠脂肪组织中的瘦素和脂质代谢酶。

Diazoxide down-regulates leptin and lipid metabolizing enzymes in adipose tissue of Zucker rats.

作者信息

Standridge M, Alemzadeh R, Zemel M, Koontz J, Moustaid-Moussa N

机构信息

Department of Nutrition, University of Tennessee, Knoxville Tennessee 37996, USA. Knoxville, Tennessee 37920, USA.

出版信息

FASEB J. 2000 Mar;14(3):455-60. doi: 10.1096/fasebj.14.3.455.

Abstract

We have previously reported that attenuation of hyperinsulinemia by diazoxide (DZ), an inhibitor of glucose-mediated insulin secretion, increased insulin sensitivity and reduced body weight in obese Zucker rats. These findings prompted us to investigate the effects of DZ on key insulin-sensitive enzymes regulating adipose tissue metabolism, fatty acid synthase (FAS), and lipoprotein lipase (LPL), as well as on circulating levels of leptin. We also determined the direct effects of diazoxide on FAS in 3T3-L1 adipocytes. Seven-week-old female obese and lean Zucker rats were treated with DZ (150 mg/kg/d) or vehicle (C, control) for a period of 6 wk. Changes in plasma parameters by DZ include significant decreases in triglycerides, free fatty acids, glucose, and insulin, consistent with our previous reports. DZ obese rats exhibited lower plasma leptin levels (P<0.03) compared to their C animals. DZ significantly reduced adipose tissue FAS activity in both lean (P<0.0001) and obese (P<0.01) animals. LPL mRNA content was also decreased significantly in DZ-treated obese animals (P<0.009) as compared to their respective controls without a significant effect on lean animals. The possibility that DZ exerted a direct effect on adipocytes was further tested in cultured 3T3-L1 adipocytes. Although diazoxide (5 microM) alone did not change FAS activity in cultured 3T3-L1 adipocytes, it significantly attenuated insulin's effect on FAS activity (P<0.001). We demonstrate that DZ regulates key insulin-sensitive enzymes involved in regulation of adipose tissue metabolism. These findings suggest that modification of insulin-sensitive pathways can be therapeutically beneficial in obesity management.

摘要

我们之前报道过,葡萄糖介导的胰岛素分泌抑制剂二氮嗪(DZ)减弱高胰岛素血症,可增加肥胖Zucker大鼠的胰岛素敏感性并减轻体重。这些发现促使我们研究DZ对调节脂肪组织代谢的关键胰岛素敏感酶、脂肪酸合酶(FAS)和脂蛋白脂肪酶(LPL)的影响,以及对瘦素循环水平的影响。我们还确定了二氮嗪对3T3-L1脂肪细胞中FAS的直接作用。7周龄雌性肥胖和瘦Zucker大鼠用DZ(150mg/kg/d)或赋形剂(C,对照)处理6周。DZ引起的血浆参数变化包括甘油三酯、游离脂肪酸、葡萄糖和胰岛素显著降低,这与我们之前的报道一致。与对照动物相比,DZ处理的肥胖大鼠血浆瘦素水平较低(P<0.03)。DZ显著降低了瘦(P<0.0001)和肥胖(P<0.01)动物脂肪组织中的FAS活性。与各自的对照相比,DZ处理的肥胖动物中LPL mRNA含量也显著降低(P<0.009),而对瘦动物没有显著影响。在培养的3T3-L1脂肪细胞中进一步测试了DZ对脂肪细胞产生直接作用的可能性。虽然单独使用二氮嗪(5μM)不会改变培养的3T3-L1脂肪细胞中的FAS活性,但它显著减弱了胰岛素对FAS活性的影响(P<0.001)。我们证明DZ调节参与脂肪组织代谢调节的关键胰岛素敏感酶。这些发现表明,改变胰岛素敏感途径在肥胖管理中可能具有治疗益处。

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