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Isoalantolactone derivative promotes glucose utilization in skeletal muscle cells and increases energy expenditure in db/db mice via activating AMPK-dependent signaling

机译:异甲酰内酯衍生物促进骨骼肌细胞中的葡萄糖利用,并通过激活AMPK依赖信来增加DB / DB小鼠中的能量消耗

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Augmenting glucose utilization and energy expenditure in skeletal muscle via AMP-activated protein kinase (AMPK) is an imperative mechanism for the management of type 2 diabetes. Chemical derivatives (2a-2h, 3, 4a-4d, 5) of the isoalantolactone (K007), a bioactive molecule from roots of Inula racemosa were synthesized to optimize the bioactivity profile to stimulate glucose utilization in skeletal muscle cells. Interestingly, 4a augmented glucose uptake, driven by enhanced translocation of glucose transporter 4 (GLUT4) to cell periphery in L6 rat skeletal muscle cells. The effect of 4a was independent to phosphatidylinositide-3-kinase (PI-3-K)/Akt pathway, but mediated through Liver kinase B1 (LKB1)/AMPK-dependent signaling, leading to activation of downstream targets acetyl coenzyme A carboxylase (ACC) and sterol regulatory element binding protein 1c (SREBP-1c). In db/db mice, 4a administration decreased blood glucose level and improved body mass index, lipid parameters and glucose tolerance associated with elevation of GLUT4 expression in skeletal muscle. Moreover, 4a increased energy expenditure via activating substrate utilization and upregulated the expression of thermogenic transcription factors and mitochondrial proteins in skeletal muscle, suggesting the regulation of energy balance. These findings suggest the potential implication of isoalantolactone derivatives for the management of diabetes. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过AMP活化的蛋白激酶(AMPK)增强骨骼肌中的血糖利用和能量消耗是2型糖尿病的必要机制。 Isoalantolontone(K007)的化学衍生物(2A-2H,3,4A-4D,5),合成来自内部内含物的根系的生物活性分子,以优化生物活性曲线,以刺激骨骼肌细胞中的葡萄糖利用率。有趣的是,4A增强葡萄糖摄取,通过增强葡萄糖转运蛋白4(Glut4)转移到L6大鼠骨骼肌细胞中的细胞周边的驱动。 4A的效果与磷脂酰阳性-3-激酶(PI-3-K)/ aKT途径无关,但通过肝激酶B1(LKB1)/ AMPK依赖性信号传导介导,导致下游靶标乙酰辅酶A羧化酶(ACC )和甾醇调节元件结合蛋白1c(srebp-1c)。在DB / DB小鼠中,4A给药降低血糖水平和改善的体重指数,脂质参数和血糖耐受性与骨骼肌中的Glut4表达升高相关。此外,4A通过激活底物利用率增加能量消耗并上调在骨骼肌中的热转录因子和线粒体蛋白的表达,表明能量平衡调节。这些研究结果表明异甲内酯衍生物对糖尿病管理的潜在含义。 (c)2017 Elsevier B.v.保留所有权利。

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