Buemann B, Toubro S, Holst J J, Rehfeld J F, Bibby B M, Astrup A
Research Department of Human Nutrition, The Royal Veterinary and Agricultural University, Frederiksberg, Denmark.
Metabolism. 2000 Aug;49(8):969-76. doi: 10.1053/meta.2000.7724.
D-Fructose has been found to increase uric acid production by accelerating the degradation of purine nucleotides, probably due to hepatocellular depletion of inorganic phosphate (Pi) by an accumulation of ketohexose-1-phosphate. The hyperuricemic effect of D-tagatose, a stereoisomer of D-fructose, may be greater than that of D-fructose, as the subsequent degradation of D-tagatose-1-phosphate is slower than the degradation of D-fructose-1-phosphate. We tested the effect of 30 g oral D-tagatose versus D-fructose on plasma uric acid and other metabolic parameters in 8 male subjects by a double-blind crossover design. Both the peak concentration and 4-hour area under the curve (AUC) of serum uric acid were significantly higher after D-tagatose compared with either 30 g D-fructose or plain water. The decline in serum Pi concentration was greater at 50 minutes after D-tagatose versus D-fructose. The thermogenic and lactacidemic responses to D-tagatose were blunted compared with D-fructose. D-Tagatose attenuated the glycemic and insulinemic responses to a meal that was consumed 255 minutes after its administration. Moreover, both fructose and D-tagatose increased plasma concentrations of cholecystokinin (CCK) and glucagon-like peptide-1 (GLP-1). The metabolic effects of D-tagatose occurred despite its putative poor absorption.
已发现D-果糖可通过加速嘌呤核苷酸的降解来增加尿酸生成,这可能是由于磷酸己酮糖-1-磷酸的积累导致肝细胞内无机磷酸盐(Pi)耗竭。D-果糖的立体异构体D-塔格糖的高尿酸血症作用可能比D-果糖更强,因为D-塔格糖-1-磷酸的后续降解比D-果糖-1-磷酸的降解更慢。我们采用双盲交叉设计,测试了8名男性受试者口服30 g D-塔格糖与D-果糖对血浆尿酸及其他代谢参数的影响。与30 g D-果糖或纯水相比,服用D-塔格糖后血清尿酸的峰值浓度和4小时曲线下面积(AUC)均显著更高。与D-果糖相比,服用D-塔格糖后50分钟时血清Pi浓度的下降幅度更大。与D-果糖相比,对D-塔格糖的产热和乳酸血症反应减弱。D-塔格糖给药255分钟后进食,其对血糖和胰岛素血症反应有减弱作用。此外,果糖和D-塔格糖均会增加血浆胆囊收缩素(CCK)和胰高血糖素样肽-1(GLP-1)的浓度。尽管D-塔格糖推测吸收较差,但其仍会产生代谢效应。