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Preserved ability to blunt sympathetically‐mediated vasoconstriction in exercising skeletal muscle of young obese humans

机译:在锻炼年轻肥胖者的骨骼肌中保持钝化交感介导的血管收缩的能力

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Sympathetic vasoconstriction is attenuated in exercising muscles to assist in matching of blood flow with metabolic demand. This “functional sympatholysis” may be impaired in young obese individuals due to greater sympathetic activation and/or reduced local vasodilatory capacity of both small and large arteries, but this remains poorly understood. We tested the hypothesis that functional sympatholysis is impaired in obese individuals compared with normal‐weight counterparts. In 36 obese and normal‐weight young healthy adults ( n ?=?18/group), we measured forearm blood flow and calculated forearm vascular conductance (FVC) responses to reflex increases in sympathetic nerve activity induced by lower body negative pressure (LBNP) at rest and during rhythmic handgrip exercise at 15% and 30% of the maximal voluntary contraction (MVC). FVC was normalized to lean forearm mass. In normal‐weight individuals, LBNP evoked a decrease in FVC (?16.1?±?5.7%) in the resting forearm, and the reduction in FVC (15%MVC: ?8.1?±?3.3%; 30%MVC: ?1.0?±?4.0%) was blunted during exercise in an intensity‐dependent manner ( P ??0.05). Similarly, in obese individuals, LBNP evoked a comparable decrease in FVC (?10.9?±?5.7%) in the resting forearm, with the reduction in FVC (15%MVC: ?9.7?±?3.3%; 30%MVC: ?0.3?±?4.0%) also blunted during exercise in an intensity‐dependent manner ( P ?? 0 .05). The magnitude of sympatholysis was similar between groups ( P ??0.05) and was intensity‐dependent ( P ??0.05). Our findings suggest that functional sympatholysis is not impaired in young obese individuals without overt cardiovascular diseases.
机译:交感血管收缩在锻炼肌肉时减弱,以帮助血液流量与代谢需求相匹配。由于较大的交感神经激活和/或小动脉和大动脉的局部血管舒张能力降低,这种“功能性交感神经溶解”可能在年轻的肥胖个体中受损,但这仍然知之甚少。我们检验了以下假设:与正常体重的肥胖者相比,肥胖者的功能性交感神经受损。在36名肥胖和体重正常的年轻健康成年人(n = 18)/组中,我们测量了前臂的血流量,并计算了前臂血管电导(FVC)对下体负压(LBNP)引起的交感神经活动反射增加的反应。在休息时和有规律的手握锻炼期间,最大自愿收缩(MVC)分别为15%和30%。将FVC标准化为瘦前臂肿块。在体重正常的个体中,LBNP引起静息前臂的FVC降低(?16.1?±?5.7%),FVC的降低(15%MVC:?8.1?±?3.3%; 30%MVC:?1.0在运动过程中以强度依赖性的方式钝化(±4.0%)(P 0.05)。同样,在肥胖个体中,LBNP引起静息前臂的FVC下降相当(约10.9%±5.7%),其中FVC下降(15%MVC:≤9.7%±3.3%; 30%MVC:≤5%。 0.3?±?4.0%)在运动过程中也会以强度依赖的方式变钝(P ?0.05)。各组之间的交感神经程度相似(P≥0.05),并且与强度有关(P <0.05)。我们的发现表明,在没有明显心血管疾病的年轻肥胖个体中,功能性交感神经功能未受损。

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