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Metformin Does Not Inhibit Exercise-Induced Lipolysis in Adipose Tissue in Young Healthy Lean Men

机译:二甲双胍不抑制年轻健康瘦男人的脂肪组织运动诱导脂解

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摘要

>Objective: Metformin was shown to exert an antilipolytic action in adipose tissue (AT) that might mediate beneficial effects on lipid metabolism in diabetic patients. However, during exercise, the inhibition of induced lipolysis in AT would limit the energy substrate supply for working muscle. Thus, the aim of this study was to investigate whether metformin exerts inhibitory effect on exercise-induced lipolysis in subcutaneous adipose tissue (SCAT) () in humans.>Approach: Ten healthy lean men underwent two exercise sessions consisting of 60 min of cycling on bicycle ergometer combined with (a) orally administered metformin and (b) metformin locally administered into SCAT. Microdialysis was used to assess lipolysis in situ in SCAT. Glycerol, metformin and lactate were measured in dialysate and plasma by enzyme colorimetric kits and capillary electrophoresis.>Results: Metformin levels increased continuously in plasma during 3 h after oral administration, and peaked after 3.5 h (peak concentration 4 μg/ml). Metformin was detected in dialysate outflowing from SCAT and showed a similar time-course as that in plasma with the peak concentration of 1.3 μg/ml. The lipolytic rate in SCAT (assessed as glycerol release) increased in response to exercise (4.3 ± 0.5-fold vs. basal; p = 0.002) and was not suppressed either by local or oral metformin administration. The lactate levels increased in plasma and in dialysate from SCAT after 30–60 min of exercise (3.6-fold vs. basal; p = 0.015; 2.75-fold vs. basal; p = 0.002, respectively). No effect of metformin on lactate levels in SCAT dialysate or in plasma during exercise was observed.>Conclusion: Metformin did not reduce the exercise-induced lipolysis in SCAT. This suggests that metformin administration does not interfere with the lipid mobilization and energy substrate provision during physical activity.
机译:>目的:二甲双胍可在脂肪组织(AT)中发挥抗脂解作用,可能介导对糖尿病患者脂质代谢的有益作用。但是,在运动过程中,抑制AT中诱导的脂肪分解会限制工作肌肉的能量底物供应。因此,本研究的目的是调查二甲双胍是否对人体皮下脂肪组织(SCAT)()的运动诱导的脂肪分解产生抑制作用。>方法:十名健康的瘦人进行了两次运动自行车测功机上骑车60分钟,与(a)口服二甲双胍和(b)局部施用于SCAT的二甲双胍相结合。微透析用于评估SCAT中的原位脂解。用酶比色试剂盒和毛细管电泳法测定透析液和血浆中甘油,二甲双胍和乳酸的含量。>结果:口服后3小时内血浆中的二甲双胍水平持续升高,并在3.5小时后达到峰值(峰值浓度4微克/毫升)。在从SCAT流出的透析液中检测到二甲双胍,并显示出与血浆中相似的时程,峰值浓度为1.3μg/ ml。 SCAT中的脂解率(以甘油释放评估)随运动而增加(相对于基础,为4.3±0.5倍; p = 0.002),而局部或口服二甲双胍均未受到抑制。运动30-60分钟后,血浆和SCAT中的透析液中的乳酸水平增加(分别为基础值的3.6倍; p = 0.015;基础值的2.75倍; p = 0.002)。在运动过程中未观察到二甲双胍对SCAT透析液或血浆中乳酸水平的影响。>结论:二甲双胍并未降低运动引起的SCAT脂解。这表明二甲双胍的给药在体育锻炼过程中不会干扰脂质的动员和能量底物的提供。

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