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二甲双胍可对抗胰岛素诱导的啮齿动物骨骼肌中脂肪酸氧化的抑制及三酰甘油储存的刺激。

Metformin counters the insulin-induced suppression of fatty acid oxidation and stimulation of triacylglycerol storage in rodent skeletal muscle.

作者信息

Collier Cheryl A, Bruce Clinton R, Smith Angela C, Lopaschuk Gary, Dyck David J

机构信息

Dept. of Human Health and Nutritional Sciences, Univ. of Guelph, Guelph, ON, Canada.

出版信息

Am J Physiol Endocrinol Metab. 2006 Jul;291(1):E182-9. doi: 10.1152/ajpendo.00272.2005. Epub 2006 Feb 14.

Abstract

The present study examined the acute effects of metformin on fatty acid (FA) metabolism in oxidative soleus (SOL) and glycolytic epitrochlearis (EPT) rodent muscle. SOL and EPT were incubated for either 30 or 180 min in the absence or presence of 2 mM metformin and with or without insulin (10 mU/ml). Metformin did not alter basal FA metabolism but countered the effects of insulin on FA oxidation and incorporation into triacylglyerol (TAG). Specifically, metformin prevented the insulin-induced suppression of FA oxidation in SOL but did not alter FA incorporation into lipid pools. In contrast, in EPT metformin blunted the incorporation of FA into TAG when insulin was present but did not alter FA oxidation. In SOL, metformin resulted in a 50% increase in AMP-activated protein kinase alpha2 activity and prevented the insulin-induced increase in malonyl-CoA content. In both fiber types, basal and insulin-stimulated glucose oxidation were not significantly altered by metformin. All effects were similar regardless of whether they were measured after 30 or 180 min. Because increased muscle lipid storage and impaired FA oxidation have been associated with insulin resistance in this tissue, the ability of metformin to reverse these abnormalities in muscle FA metabolism may be a part of the mechanism by which metformin improves glucose clearance and insulin sensitivity. The present data also suggest that increased glucose clearance is not due to its enhanced subsequent oxidation. Additional studies are warranted to determine whether chronic metformin treatment has similar effects on muscle FA metabolism.

摘要

本研究检测了二甲双胍对啮齿动物氧化型比目鱼肌(SOL)和糖酵解型肱三头肌(EPT)脂肪酸(FA)代谢的急性影响。将SOL和EPT在不存在或存在2 mM二甲双胍以及有或无胰岛素(10 mU/ml)的情况下孵育30或180分钟。二甲双胍未改变基础FA代谢,但抵消了胰岛素对FA氧化和掺入三酰甘油(TAG)的影响。具体而言,二甲双胍可防止胰岛素诱导的SOL中FA氧化的抑制,但不改变FA掺入脂质池。相反,在EPT中,当存在胰岛素时,二甲双胍减弱了FA掺入TAG,但不改变FA氧化。在SOL中,二甲双胍使AMP激活的蛋白激酶α2活性增加50%,并防止胰岛素诱导的丙二酰辅酶A含量增加。在两种纤维类型中,二甲双胍对基础和胰岛素刺激的葡萄糖氧化均无显著改变。无论在30分钟还是180分钟后测量,所有效应均相似。由于肌肉脂质储存增加和FA氧化受损与该组织中的胰岛素抵抗有关,二甲双胍逆转肌肉FA代谢这些异常的能力可能是二甲双胍改善葡萄糖清除率和胰岛素敏感性机制的一部分。目前的数据还表明,葡萄糖清除率增加并非由于其随后氧化增强。有必要进行进一步研究以确定长期二甲双胍治疗对肌肉FA代谢是否有类似影响。

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