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首页> 外文期刊>Journal of applied physiology >Divergent outcomes of fructose consumption on exercise capacity of rats: friend or foe
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Divergent outcomes of fructose consumption on exercise capacity of rats: friend or foe

机译:对大鼠运动能力的果糖消耗的分歧结果:朋友或敌人

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摘要

To test the hypothesis that high fructose (HF) consumption divergently affects exercise capability as a function of feeding duration, rats were fed a normal (as control) diet or a normal caloric diet with HF for 3, 6, 10, and 30 days, respectively, and then were run on a treadmill. Results show that running distance and work were significantly increased, which was associated with greater exercise oxygen consumption in rats fed HF for 3 (HF-3D) and 6 days, but were decreased in rats fed HF for 30 days (HF-30D) compared with rats in their respective control groups. Shear stress-induced vasodilation (SSID) in isolated plantaris muscle arterioles was significantly greater in the HF-3D group than the control group. The difference in SSID between the two groups was abolished by N-omega-nitro-L-arginine methyl ester (L-NAME), suggesting a nitric oxide (NO)-mediated response. Expression of phosphorylated/activated endothelial NO synthase (eNOS) and release of nitrite/NO were significantly increased in vessels of animals in the HF-3D group than controls. In contrast, arterioles isolated from the hypertensive rats in the HF-30D group displayed significantly attenuated NO-mediated SSID accompanied with greater production of superoxide compared with vessels of control animals. Additionally, the NO-dependent modulation of myocardial oxygen consumption (MVO2) was also impaired in the HF-30D group, and was prevented by blocking superoxide production with apocynin, an inhibitor that also normalized the reduced SSID in the HF-30D group. In conclusion, short-term (3-6 days) HF feeding enhances exercise potential via an increase in endothelial sensitivity to shear stress, which stimulates eNOS to release NO, leading to better tissue perfusion and utilization of oxygen. However, long-term (30 days) HF feeding initiates endothelial dysfunction by superoxide-dependent mechanisms to compromise exercise performance.
机译:为了测试高果糖(HF)消耗发散地影响运动能力作为喂养持续时间的函数的假设,大鼠饲喂正常(作为对照)饮食或用HF进行正常热量饮食,3,6,10和30天,分别,然后在跑步机上运行。结果表明,运行距离和工作明显增加,其在喂养HF的大鼠3(HF-3D)和6天内的大鼠中具有更高的运动氧气消耗,但在喂养HF的大鼠(HF-30D)的大鼠中减少与各自对照组的大鼠。在HF-3D组中,剪切应激诱导的血管舒张(SSID)在HF-3D组中显着大于对照组。通过N-OMEGA-NITRO-L-精氨酸甲酯(L-NAME)废除了两组之间SSID之间的差异,表明一氧化氮(NO)介导的反应。在HF-3D组的动物的血管中,磷酸化/活化内皮的表达和亚硝酸盐/ NO的释放显着增加,而不是对照。相比之下,与对照动物的血管相比,从HF-30D组中分离的高血压大鼠中的高血压大鼠明显减弱的无介导的SSID伴随着更大的超氧化物。另外,在HF-30D组中也损害了心肌氧消耗(MVO2)的无依赖性调节,并通过用Apocynin阻断超氧化物产生,抑制剂在HF-30D组中归一化的抑制剂。总之,短期(3-6天)HF饲料通过增加内皮敏感性对剪切应力的增加来增强运动潜力,这刺激了eNOS释放NO,导致更好的组织灌注和氧气利用。然而,长期(30天)HF饲料通过超氧化物依赖性机制引发内皮功能障碍以损害运动性能。

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