Tim Podlogar, Simon Cirnski, Špela Bokal, Nina Verdel, Javier T Gonzalez
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On Day 2, in the morning, participants received 2 g/kg of CHOs in the form of glucose and rice or fructose and rice, both in a CHO ratio of 1:2. Two hours later they commenced cycling exercise session at the intensity of the first ventilatory threshold until task failure. Exercise capacity was higher in fructose and rice (137.0 ± 22.7 min) as compared with glucose and rice (130.06 ± 19.87 min; p = .046). Blood glucose and blood lactate did not differ between the trials (p > .05) and neither did CHO and fat oxidation rates (p > .05). However, due to the duration of exercise, total CHO oxidation was higher in fructose and rice (326 ± 60 g vs. 298 ± 61 g, p = .009). Present data demonstrate that addition of fructose to a glucose-based CHO source at breakfast improves endurance exercise capacity. 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引用次数: 2
摘要
先前的研究表明,与仅以葡萄糖为基础的碳水化合物(CHOs)相比,运动后摄入果糖-葡萄糖混合物可导致肝脏和肌肉糖原合成更优。经过一夜禁食后,肝糖原储存减少,基于此,我们假设在以葡萄糖为基础的早餐中添加果糖会提高随后的耐力运动能力。在这项双盲交叉随机研究中(8名男性,峰值摄氧量:62.2±5.4 ml·kg-1·min-1),参与者完成了两个实验试验,包括两个锻炼回合。在第1天的下午,他们完成了一次循环间歇训练,以使糖原储存正常化,之后提供标准化的高cho饮食4小时。在第2天的早晨,参与者以葡萄糖和大米或果糖和大米的形式接受了每公斤2克的CHOs,两者的CHO比例都是1:2。两小时后,他们开始以第一次呼吸阈值的强度进行循环运动,直到任务失败。果糖和大米组的运动能力(137.0±22.7 min)高于葡萄糖和大米组(130.06±19.87 min);P = .046)。两组间血糖和血乳酸没有差异(p > 0.05), CHO和脂肪氧化率也没有差异(p > 0.05)。然而,由于运动时间的延长,果糖和大米的总CHO氧化量更高(326±60 g vs. 298±61 g, p = 0.009)。目前的数据表明,在早餐中添加果糖以葡萄糖为基础的CHO源可以提高耐力运动能力。需要进一步的研究来确定作用机制和最佳剂量和比例。
Addition of Fructose to a Carbohydrate-Rich Breakfast Improves Cycling Endurance Capacity in Trained Cyclists.
It was previously demonstrated that postexercise ingestion of fructose-glucose mixtures can lead to superior liver and equal muscle glycogen synthesis as compared with glucose-based carbohydrates (CHOs) only. After an overnight fast, liver glycogen stores are reduced, and based on this we hypothesized that addition of fructose to a glucose-based breakfast would lead to improved subsequent endurance exercise capacity. In this double-blind cross-over randomized study (eight males, peak oxygen uptake: 62.2 ± 5.4 ml·kg-1·min-1), participants completed two experimental trials consisting of two exercise bouts. In the afternoon of Day 1, they completed a cycling interval training session to normalize glycogen stores after which a standardized high-CHO diet was provided for 4 hr. On Day 2, in the morning, participants received 2 g/kg of CHOs in the form of glucose and rice or fructose and rice, both in a CHO ratio of 1:2. Two hours later they commenced cycling exercise session at the intensity of the first ventilatory threshold until task failure. Exercise capacity was higher in fructose and rice (137.0 ± 22.7 min) as compared with glucose and rice (130.06 ± 19.87 min; p = .046). Blood glucose and blood lactate did not differ between the trials (p > .05) and neither did CHO and fat oxidation rates (p > .05). However, due to the duration of exercise, total CHO oxidation was higher in fructose and rice (326 ± 60 g vs. 298 ± 61 g, p = .009). Present data demonstrate that addition of fructose to a glucose-based CHO source at breakfast improves endurance exercise capacity. Further studies are required to determine the mechanisms and optimal dose and ratio.
期刊介绍:
The International Journal of Sport Nutrition and Exercise Metabolism (IJSNEM) publishes original scientific investigations and scholarly reviews offering new insights into sport nutrition and exercise metabolism, as well as articles focusing on the application of the principles of biochemistry, physiology, and nutrition to sport and exercise. The journal also offers editorials, digests of related articles from other fields, research notes, and reviews of books, videos, and other media releases.
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