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首页> 外文期刊>International journal of sports medicine >Arterial Stiffness Response to Regular Aerobic Training in Hypercholesterolemia Patients
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Arterial Stiffness Response to Regular Aerobic Training in Hypercholesterolemia Patients

机译:高胆固醇血症患者常规有氧训练的动脉僵硬反应

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摘要

Physical exercise increase is confirmed as a fundamental treatment for hypercholesterolemia patients, but the effect on the arterial stiffness and oxidative stress is still unclear. 74 hypercholesterolemia patients were divided into 2 groups. The exercise group received dietary recommendations and a 3-month exercise program, prescribed according to their first cardiopulmonary exercise tests(CPET), while the control group only received dietary recommendations. All patients underwent blood tests, CPET and brachial-ankle pulse wave velocity (baPWV) studies at enrollment and at 3 months' follow-up. At the end of 3 months, there was no change in total cholesterol (TC) level in either group. However, in the exercise group, we found maximal exercise parameters increased and baPWV values declined. Meanwhile, there were significant changes in the level of malondialdehyde, 8-isoprostane-F2 and superoxide dismutase. Moreover, the change of baPWV was positively correlated with the change of 8-isoprostane-F2 (r=0.36, P0.01). In the control group, no change in baPWV or oxidative biomarker was observed. Our findings suggested that regular aerobic exercise could lessen arterial stiffness in hypercholesterolemia patients, even in the context of no obvious TC decrease. During this process, favorable adjustment in oxidative stress might be an important pathway, which remains to be further explored.
机译:体育锻炼增加被证实为高胆固醇血症患者的基本治疗,但对动脉僵硬和氧化应激的影响仍然不清楚。将74例高胆固醇血症患者分为2组。锻炼组收到膳食建议和3个月的运动方案,根据其第一批心肺运动试验(CPET)规定,而对照组仅收到膳食建议。所有患者患有血液测试,CPET和肱踝脉搏波速度(BAPWV)的入学期间和3个月后续行动。在3个月结束时,任一组的总胆固醇(TC)水平没有变化。然而,在运动组中,我们发现最大的运动参数增加,Bapwv值下降。同时,丙二醛,8异己烷-F2和超氧化物歧化酶水平存在显着变化。此外,BAPWV的变化与8-异前烷烃-F2的变化呈正相关(r = 0.36,p <0.01)。在对照组中,观察到BAPWV或氧化生物标志物的变化。我们的研究结果表明,常规的有氧运动可以减少高胆固醇血症患者的动脉僵硬,即使在没有明显的TC减少的背景下也是如此。在此过程中,氧化应激的有利调整可能是一个重要的途径,其仍有待进一步探索。

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