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Metabolic Effects of Glucose-Fructose Co-Ingestion Compared to Glucose Alone during Exercise in Type 1 Diabetes

机译:1型糖尿病运动中葡萄糖-果糖共摄入与单独葡萄糖相比的代谢作用

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This paper aims to compare the metabolic effects of glucose-fructose co-ingestion (GLUFRU) with glucose alone (GLU) in exercising individuals with type 1 diabetes mellitus. Fifteen male individuals with type 1 diabetes (HbA1c 7.0% ± 0.6% (53 ± 7 mmol/mol)) underwent a 90 min iso-energetic continuous cycling session at 50% VO 2max while ingesting combined glucose-fructose (GLUFRU) or glucose alone (GLU) to maintain stable glycaemia without insulin adjustment. GLUFRU and GLU were labelled with 13 C-fructose and 13 C-glucose, respectively. Metabolic assessments included measurements of hormones and metabolites, substrate oxidation, and stable isotopes. Exogenous carbohydrate requirements to maintain stable glycaemia were comparable between GLUFRU and GLU ( p = 0.46). Fat oxidation was significantly higher (5.2 ± 0.2 vs. 2.6 ± 1.2 mg·kg ?1 ·min ?1 , p < 0.001) and carbohydrate oxidation lower (18.1 ± 0.8 vs. 24.5 ± 0.8 mg·kg ?1 ·min ?1 p < 0.001) in GLUFRU compared to GLU, with decreased muscle glycogen oxidation in GLUFRU (10.2 ± 0.9 vs. 17.5 ± 1.0 mg·kg ?1 ·min ?1 , p < 0.001). Lactate levels were higher (2.2 ± 0.2 vs. 1.8 ± 0.1 mmol/L, p = 0.012) in GLUFRU, with comparable counter-regulatory hormones between GLUFRU and GLU ( p > 0.05 for all). Glucose and insulin levels, and total glucose appearance and disappearance were comparable between interventions. Glucose-fructose co-ingestion may have a beneficial impact on fuel metabolism in exercising individuals with type 1 diabetes without insulin adjustment, by increasing fat oxidation whilst sparing glycogen.
机译:本文旨在比较葡萄糖-果糖共摄取(GLUFRU)和仅葡萄糖(GLU)在锻炼1型糖尿病患者中的代谢作用。 15名1型糖尿病(HbA1c 7.0%±0.6%(53±7 mmol / mol))男性个体以50%VO 2max进行90分钟的等能量连续循环,同时摄入联合葡萄糖-果糖(GLUFRU)或单独摄取葡萄糖(GLU)无需调节胰岛素即可维持稳定的血糖。 GLUFRU和GLU分别用13 C-果糖和13 C-葡萄糖标记。代谢评估包括激素和代谢产物,底物氧化和稳定同位素的测量。维持稳定血糖所需的外源碳水化合物需求在GLUFRU和GLU之间是可比的(p = 0.46)。脂肪氧化显着较高(5.2±0.2 vs. 2.6±1.2 mg·kg?1·min?1,p <0.001),碳水化合物氧化较低(18.1±0.8 vs. 24.5±0.8 mg·kg?1·min?1)与GLU相比,GLUFRU中的p <0.001),但GLUFRU中的肌肉糖原氧化减少(10.2±0.9与17.5±1.0 mg·kg?1·min?1,p <0.001)。 GLUFRU中的乳酸水平较高(2.2±0.2 vs. 1.8±0.1 mmol / L,p = 0.012),并且在GLUFRU和GLU之间具有相当的反调节激素(所有p> 0.05)。干预之间的葡萄糖和胰岛素水平以及总葡萄糖的出现和消失是可比较的。葡萄糖-果糖共掺入可能会增加脂肪氧化同时保留糖原,从而在不进行胰岛素调节的情况下锻炼1型糖尿病患者,对燃料代谢产生有益影响。

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