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在能量消耗相似的情况下,上坡行走和下坡跑步后血浆中多形核弹性蛋白酶和髓过氧化物酶的水平。

Plasma levels of polymorphonuclear elastase and myeloperoxidase after uphill walking and downhill running at similar energy cost.

作者信息

Camus G, Pincemail J, Ledent M, Juchmès-Ferir A, Lamy M, Deby-Dupont G, Deby C

机构信息

FNRS, Laboratory of Human Applied Physiology, ISEPK, University of Liège, Belgium.

出版信息

Int J Sports Med. 1992 Aug;13(6):443-6. doi: 10.1055/s-2007-1021295.

Abstract

This study was designed to compare the effects of eccentric and concentric exercises on blood polymorphonuclear neutrophil count (nPMN) and plasma levels of myeloperoxidase ([MPO]) and elastase ([EL]) used as markers of neutrophil (PMN) activation. Ten healthy male subjects underwent 2 periods of exercise of 20 min duration each at 60% VO2max on an inclined treadmill. They initially walked up a 5% grade (UW). Ten days later they ran downhill on a 20% grade (RD). Blood samples were collected 10 min before and immediately after exercise. A postexercise sample was drawn after 20 min recovery. Both exercise bouts were accompanied by a similar and significant (p < 0.01) increase of 33% in nPMN above resting values. Baseline nPMN values were reached after 20 min recovery. There were no significant changes in [MPO] and [EL] following UW. In contrast, RD was followed by significant increases (p < 0.001) in [MPO] (+97%) and [EL] (+70%) above resting levels. While [MPO] returned to its pre-exercise level after 20 min recovery, [EL] remained significantly elevated (p < 0.05). These results clearly demonstrate the importance of the eccentric component of muscle contraction in exercise-induced PMN activation.

摘要

本研究旨在比较离心运动和向心运动对血液中多形核中性粒细胞计数(nPMN)以及用作中性粒细胞(PMN)激活标志物的血浆髓过氧化物酶([MPO])和弹性蛋白酶([EL])水平的影响。10名健康男性受试者在倾斜跑步机上以60%最大摄氧量进行了两个阶段的运动,每个阶段持续20分钟。他们最初在5%坡度上向上行走(UW)。10天后,他们在20%坡度上向下跑步(RD)。在运动前10分钟和运动后立即采集血样。运动后20分钟恢复时抽取样本。两次运动均伴随着nPMN较静息值显著增加33%(p<0.01)。20分钟恢复后达到基线nPMN值。UW后[MPO]和[EL]无显著变化。相比之下,RD后[MPO](+97%)和[EL](+70%)较静息水平显著升高(p<0.001)。虽然[MPO]在20分钟恢复后恢复到运动前水平,但[EL]仍显著升高(p<0.05)。这些结果清楚地证明了肌肉收缩的离心成分在运动诱导的PMN激活中的重要性。

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