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首页> 外文期刊>Journal of applied physiology >Preventive role of exercise training in autonomic, hemodynamic, and metabolic parameters in rats under high risk of metabolic syndrome development
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Preventive role of exercise training in autonomic, hemodynamic, and metabolic parameters in rats under high risk of metabolic syndrome development

机译:运动训练对代谢综合征高风险大鼠自律,血流动力学和代谢参数的预防作用

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High fructose consumption contributes to metabolic syndrome incidence, whereas exercise training promotes several beneficial adaptations. In this study, we demonstrated the preventive role of exercise training in the metabolic syndrome derangements in a rat model. Wistar rats receiving fructose overload in drinking water (100 g/l) were concomitantly trained on a treadmill (FT) or kept sedentary (F) for 10 wk. Control rats treated with normal water were also submitted to exercise training (CT) or sedentarism (C). Metabolic evaluations consisted of the Lee index and glycemia and insulin tolerance test (kITT). Blood pressure (BP) was directly measured, whereas heart rate (HR) and BP variabilities were evaluated in time and frequency domains. Renal sympathetic nerve activity was also recorded. F rats presented significant alterations compared with all the other groups in insulin resistance (in mg?dl~(-1)?min~(-1): F: 3.4 +- 0.2; C: 4.7 +- 0.2; CT: 5.0 +- 0.5 FT: 4.6 +-0.4), mean BP (in mmHG: F: 117 +- 2; C: 100 +- 2; CT: 98 +- 2; FT: 105 +- 2), and Lee index (in g/mm: F = 0.31 +- 0.001; C = 0.29 +-0.001; CT = 0.27 +- 0.002; FT = 0.28 +- 0.002), confirming the metabolic syndrome diagnosis. Exercise training blunted all these derangements. Additionally, FS group presented autonomic dysfunction in relation to the others, as seen by an -50% decrease in baroreflex sensitivity and 24% in HR variability, and increases in sympathovagal balance (440%) and in renal sympathetic nerve activity (45%). These impairments were not observed in FT group, as well as in C and CT. Correlation analysis showed that both Lee index and kITT were associated with vagal impairment caused by fructose. Therefore, exercise training plays a preventive role in both autonomic and hemodynamic alterations related to the excessive fructose consumption.
机译:果糖的高消耗会导致代谢综合征的发生,而运动训练则会促进多种有益的适应。在这项研究中,我们证明了运动训练在大鼠模型中代谢综合征紊乱中的预防作用。在饮用水(100 g / l)中接受果糖超负荷的Wistar大鼠同时在跑步机(FT)上训练或久坐(F)10周。用普通水处理过的对照大鼠也要接受运动训练(CT)或久坐不动(C)。代谢评估包括Lee指数,血糖和胰岛素耐受性测试(kITT)。直接测量血压(BP),而在时域和频域评估心率(HR)和BP变异性。还记录了肾交感神经活动。与所有其他组相比,F大鼠的胰岛素抵抗发生了显着变化(以mg?dl〜(-1)?min〜(-1):F:3.4 +-0.2; C:4.7 +-0.2; CT:5.0 + -0.5 FT:4.6 + -0.4),平均BP(单位mmHG:F:117 + -2; C:100 +-2; CT:98 +-2; FT:105 + -2)和Lee指数(in g / mm:F = 0.31±0.001; C = 0.29±0.001; CT = 0.27±0.002; FT = 0.28±0.002),证实了代谢综合征的诊断。运动训练减轻了所有这些不适。此外,FS组相对于其他组表现出自主神经功能障碍,压力反射敏感性降低-50%,HR可变性降低24%,交感神经平衡增加(440%)和肾交感神经活动(45%) 。在FT组以及C和CT中未观察到这些损伤。相关分析表明,Lee指数和kITT均与果糖引起的迷走神经损伤有关。因此,运动训练在果糖消耗过多相关的自主神经和血液动力学改变中均具有预防作用。

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