不同血糖指数的高碳水化合物混合餐对女性后续运动中底物利用的影响。

Emma J Stevenson, Clyde Williams, Laura E Mash, Beth Phillips, Maria L Nute
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引用次数: 128

摘要

背景:关于不同血糖指数混合膳食对女性运动过程中代谢反应及其对底物代谢影响的研究资料很少。目的:研究运动前混合餐提供高(HGI)或低血糖指数(LGI)碳水化合物对女性休息和运动期间底物利用的影响。设计:8名健康、活跃、月经来潮的女性[年龄18.6±0.9岁;体重:59.9±7.1 kg;最大摄氧量(VO(2)max): 48.7 +/- 1.1 mL。公斤(1)。Min(-1)]完成2次试验。在每次实验中,受试者在以65% VO(2)max在电动跑步机上进行60分钟的跑步前3小时提供测试早餐。两种早餐每公斤体重提供2克碳水化合物,并且是等能量的。两餐的计算gi分别为78 (HGI)和44 (LGI)。结果:高血糖组早餐后血糖和胰岛素峰值均高于低血糖组(P < 0.05)。在整个餐后期间,底物氧化无显著差异。在运动过程中,LGI组的脂肪氧化率高于HGI组(P < 0.05)。同样,在LGI试验中,血浆游离脂肪酸和甘油浓度在整个运动过程中都较高(P < 0.05)。运动期间血糖和血清胰岛素无显著差异。结论:改变膳食中碳水化合物的GI值可显著改变女性餐后高血糖和高胰岛素反应。运动前进食LGI的人在运动过程中的脂肪氧化率高于进食HGI的人。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of high-carbohydrate mixed meals with different glycemic indexes on substrate utilization during subsequent exercise in women.

Background: Few data exist on the metabolic responses to mixed meals with different glycemic indexes and their effects on substrate metabolism during exercise in women.

Objective: We examined the effects of preexercise mixed meals providing carbohydrates with high (HGI) or low glycemic index (LGI) on substrate utilization during rest and exercise in women.

Design: Eight healthy, active, eumenorrheic women [aged 18.6 +/- 0.9 y; body mass: 59.9 +/- 7.1 kg; maximal oxygen uptake (VO(2)max): 48.7 +/- 1.1 mL . kg(-1) . min(-1)] completed 2 trials. On each occasion, subjects were provided with a test breakfast 3 h before performing a 60-min run at 65% VO(2)max on a motorized treadmill. Both breakfasts provided 2 g carbohydrate/kg body mass and were isoenergetic. The calculated GIs of the meals were 78 (HGI) and 44 (LGI).

Results: Peak plasma glucose and serum insulin concentrations were greater after the HGI breakfast than after the LGI breakfast (P < 0.05). No significant differences in substrate oxidation were reported throughout the postprandial period. During exercise, the estimated rate of fat oxidation was greater in the LGI trial than in the HGI trial (P < 0.05). Similarly, plasma free fatty acid and glycerol concentrations were higher throughout exercise in the LGI trial (P < 0.05). No significant differences in plasma glucose or serum insulin were observed during exercise.

Conclusion: Altering the GI of the carbohydrate within a meal significantly changes the postprandial hyperglycemic and hyperinsulinemic responses in women. A LGI preexercise meal resulted in a higher rate of fat oxidation during exercise than did an HGI meal.

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