首页> 外文期刊>Advances in Bioscience and Biotechnology >L-ornithine hydrochloride ingestion increased carbohydrate oxidation but not lipid oxidation during submaximal endurance exercise following resistance exercise
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L-ornithine hydrochloride ingestion increased carbohydrate oxidation but not lipid oxidation during submaximal endurance exercise following resistance exercise

机译:抵抗运动后的次最大耐力运动期间,摄入左旋鸟氨酸盐酸盐会增加碳水化合物的氧化,但不会增加脂质的氧化

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This study aimed to examine the effect of L-ornithine hydrochloride ingestion on lipid oxidation during submaximal endurance exercise following resistance exercise. Ten healthy young male adults with no history of regular resistance exercise (age: 26.0 +/- 4.4) conducted resistance exercise after L-ornithine hydrochloride or placebo ingestion (0.1 g/kg). Subjects exercised for 60 min on an ergometer at 50% VO2peak 120 min after resistance exercise. Plasma ornithine concentrations measured immediately, 120min and 180min after resistance exercise in the L-ornithine hydrochloride ingestion condition were significantly greater than those in the placebo condition. No significant difference was found in serum growth hor mone concentrations between both conditions (F = 4.4, p = 0.065). Serum free fatty acid concentrations were significantly greater immediately after submaximal ergometer bicycle exercise in both conditions than those before ingestion, immediately after resistance exercise and 120min after resistance exercise (F = 43.4, p .001, 300% - 508%), but no significant difference was found between both conditions (F = 3.6, p = 0.090). A similar trend was observed in serum ketone bodies as well. Although total energy production during submaximal ergometer exercise did not significantly differ (t = 0.74, p = 0.238), a significant difference was found in energy production via carbohydrate and lipid oxidation; the former was greater in the Lornithine hydrochloride ingestion condition (t = 1.89, p = 0.046, d = 0.44, 106%), and the latter was greater in the placebo condition (t = 1.89, p = 0.046, d = 0.78%, 145%). From the above, L-ornithine hydrochloride ingestion may not affect lipid metabolism during submaximal endurance exercise following resistance exercise. It may be involved in energy production via carbohydrate oxidation with glucogenic amino acid.
机译:这项研究的目的是检查在抵抗运动后的次最大耐力运动过程中,摄入盐酸左旋鸟氨酸盐酸盐对脂质氧化的影响。十名没有定期抵抗运动史的健康年轻男性成年人(年龄:26.0 +/- 4.4)在服用盐酸左旋鸟氨酸或服用安慰剂(0.1 g / kg)后进行了抵抗运动。抵抗运动后120分钟,在50%VO2peak的测力计上运动60分钟。在盐酸左旋鸟氨酸摄入条件下进行抗性锻炼后立即,120分钟和180分钟测量的血浆鸟氨酸浓度显着高于安慰剂条件下的血浆鸟氨酸浓度。在两种情况下,血清生长激素浓度均未发现明显差异(F = 4.4,p = 0.065)。在这两种情况下,在进行最大量测力计自行车运动后,血清游离脂肪酸浓度均显着高于摄入前,抵抗运动后立即和抵抗运动后120min(F = 43.4,p .001,300 %-508 %),但两种条件之间均未发现显着差异(F = 3.6,p = 0.090)。在血清酮体中也观察到类似趋势。尽管在最大测功机运动期间的总能量产生没有显着差异(t = 0.74,p = 0.238),但通过碳水化合物和脂质氧化产生的能量却存在显着差异。前者在盐酸洛尼丁摄入条件下较高(t = 1.89,p = 0.046,d = 0.44,106%),而后者在安慰剂条件下较大(t = 1.89,p = 0.046,d = 0.78 %,145 %)。综上所述,在抵抗运动后的次最大耐力运动中,L-鸟氨酸盐酸盐的摄入可能不会影响脂质代谢。它可能涉及通过糖原性氨基酸与碳水化合物的氧化而产生的能量。

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