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首页> 外文期刊>Journal of applied physiology >Substrate source utilization during moderate intensity exercise with glucose ingestion in Type 1 diabetic patients
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Substrate source utilization during moderate intensity exercise with glucose ingestion in Type 1 diabetic patients

机译:1型糖尿病患者在中等强度运动中摄入葡萄糖的过程中底物来源的利用

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Substrate oxidation and the respective contributions of exogenous glucose, glucose released from the liver, and muscle glycogen oxidation were measured by indirect respiratory calorimetry combined with tracer technique in eight control subjects and eight diabetic patients (5 men and 3 women in both groups) of similar age, height, body mass, and maximal oxygen uptake, over a 60-min exercise period on cycle ergometer at 50.8% (SD 4.0) maximal oxygen uptake [131.0 W (SD 38.2)]. The subjects and patients ingested a breakfast (containing 80 g of carbohydrates) 3 h before and 30 g of glucose (labeled with 13C) 15 min before the beginning of exercise. The diabetic patients also received their usual insulin dose [Humalog = 9.1 U (SD 0.9); Humulin N = 13.9 U (SD 4.4)] immediately before the breakfast. Over the last 30 min of exercise, the oxidation of carbohydrate [1.32 g/min (SD 0.48) and 1.42 g/min (SD 0.63)] and fat [0.33 g/min (SD 0.10) and 0.30 g/min (SD 0.10)] and their contribution to the energy yield were not significantly different in the control subjects and diabetic patients. Exogenous glucose oxidation was also not significantly different in the control subjects and diabetic patients [6.3 g/30 min (SD 1.3) and 5.2 g/30 min (SD 1.6), respectively]. In contrast, the oxidation of plasma glucose and oxidation of glucose released from the liver were significantly lower in the diabetic patients than in control subjects [14.5 g/30 min (SD 4.3) and 9.3 g/30 min (SD 2.8) vs. 27.9 g/30 min (SD 13.3) and 21.6 g/30 min (SD 12.8), respectively], whereas that of muscle glycogen was significantly higher [28.1 g/30 min (SD 15.5) vs. 11.6 g/30 min (SD 8.1)]. These data indicate that, compared with control subjects, in diabetic patients fed glucose before exercise, substrate oxidation and exogenous glucose oxidation overall are similar but plasma glucose oxidation is lower; this is associated with a compensatory higher utilization of muscle glycogen.
机译:通过间接呼吸量热结合示踪技术,测量了八名对照受试者和八名糖尿病患者(两组分别为5名男性和3名女性)的底物氧化和外源葡萄糖,从肝脏释放的葡萄糖以及肌肉糖原氧化的各自贡献。年龄,身高,体重和最大摄氧量,在周期测力计上进行60分钟的运动,最大摄氧量为50.8%(SD 4.0)[131.0 W(SD 38.2)]。受试者和患者在运动开始前15分钟进食早餐(含80 g碳水化合物),并在运动开始前15 min摄入30 g葡萄糖(标为13C)。糖尿病患者也接受了通常的胰岛素剂量[Humalog = 9.1 U(SD 0.9);早餐前即将Humulin N = 13.9 U(SD 4.4)]。在运动的最后30分钟内,碳水化合物[1.32 g / min(SD 0.48)和1.42 g / min(SD 0.63)]和脂肪[0.33 g / min(SD 0.10)和0.30 g / min(SD 0.10)的氧化)]及其对能量产生的贡献在对照组和糖尿病患者中无显着差异。在对照组和糖尿病患者中,外源性葡萄糖氧化也没有显着差异[分别为6.3 g / 30 min(SD 1.3)和5.2 g / 30 min(SD 1.6)]。相反,糖尿病患者的血浆葡萄糖氧化和从肝脏释放的葡萄糖氧化明显低于对照组[14.5 g / 30 min(SD 4.3)和9.3 g / 30 min(SD 2.8)与27.9。 g / 30分钟(SD 13.3)和21.6 g / 30分钟(SD 12.8)],而肌肉糖原的显着更高[28.1 g / 30分钟(SD 15.5)与11.6 g / 30分钟(SD 8.1) )]。这些数据表明,与对照组相比,在运动前进食葡萄糖的糖尿病患者中,底物氧化和外源性葡萄糖氧化总体上相似,但血浆葡萄糖氧化更低。这与肌肉糖原的补偿性更高利用有关。

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