Ohno Masao, Ka Tuneyoshi, Inokuchi Taku, Moriwaki Yuji, Yamamoto Asako, Takahashi Sumio, Tsutsumi Zenta, Tsuzita Junzou, Yamamoto Tetsuya, Nishiguchi Shuhei
Department of Internal Medicine, Hyogo College of Medicine, Nishinomiya, Hyogo, Japan.
Clin Chim Acta. 2008 Feb;388(1-2):167-72. doi: 10.1016/j.cca.2007.10.032. Epub 2007 Nov 5.
Since grape juice contains considerable amounts of fructose, which may increase the plasma concentration of urate, the combination of exercise and grape juice may increase the plasma concentration of urate to a greater degree than grape juice or exercise alone.
We performed 3 experiments with 6 healthy male Japanese. The first was exercise alone (exercise alone experiment), the second was grape juice ingestion alone (grape juice alone experiment), and the third was a combination of exercise and grape juice ingestion (combination experiment).
In the exercise alone experiment, the concentrations of purine bases and uridine in plasma, and lactate in blood, as well as the urinary excretion of oxypurines were increased, whereas the urinary excretion of uric acid and fractional excretion of purine bases were decreased. In the grape juice alone experiment, the concentrations of purine bases and uridine, as well as lactate in blood were increased, whereas the fractional excretion of uric acid was decreased. In the combination experiment, the concentrations of purine bases and uridine in plasma, and lactate in blood, as well as the urinary excretion of oxypurines were increased, whereas the urinary excretion of uric acid and fractional excretion of hypoxanthine, xanthine, and uric acid were decreased. The increase in plasma concentration of urate by the combination of exercise and grape juice was greater than that by each alone, though it was not significantly different from the sum of increases in those 2 experiments.
Increases in adenine nucleotide degradation and lactic acid production caused by both exercise and grape juice ingestion play an important role in the increase in plasma concentration of urate, while those in combination have an additive effect on that concentration.
由于葡萄汁含有大量果糖,可能会增加血浆尿酸浓度,因此运动与葡萄汁相结合可能比单独饮用葡萄汁或单独运动更能提高血浆尿酸浓度。
我们对6名健康的日本男性进行了3项实验。第一项是单独运动(单独运动实验),第二项是单独摄入葡萄汁(单独摄入葡萄汁实验),第三项是运动与摄入葡萄汁相结合(联合实验)。
在单独运动实验中,血浆中嘌呤碱和尿苷的浓度、血液中的乳酸以及氧嘌呤的尿排泄量增加,而尿酸的尿排泄量和嘌呤碱的分数排泄量减少。在单独摄入葡萄汁实验中,嘌呤碱和尿苷的浓度以及血液中的乳酸增加,而尿酸的分数排泄量减少。在联合实验中,血浆中嘌呤碱和尿苷的浓度、血液中的乳酸以及氧嘌呤的尿排泄量增加,而尿酸的尿排泄量以及次黄嘌呤、黄嘌呤和尿酸的分数排泄量减少。运动与葡萄汁相结合导致的血浆尿酸浓度升高幅度大于单独运动或单独摄入葡萄汁,但与这两项实验升高幅度之和无显著差异。
运动和摄入葡萄汁均导致的腺嘌呤核苷酸降解增加和乳酸生成增加,在血浆尿酸浓度升高中起重要作用,而两者结合对该浓度有相加作用。