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通过3H-哇巴因与完整活检组织结合,对适度身体锻炼前后的人体骨骼肌钠钾ATP酶浓度进行定量分析。

Human skeletal muscle Na, K-ATPase concentration quantified by 3H-ouabain binding to intact biopsies before and after moderate physical conditioning.

作者信息

Kjeldsen K, Nørgaard A, Hau C

机构信息

Department of Medicine, Rigshospitalet, University of Copenhagen, School of Medicine, Denmark.

出版信息

Int J Sports Med. 1990 Aug;11(4):304-7. doi: 10.1055/s-2007-1024812.

Abstract

The putative effect of moderate training on human skeletal muscle Na,K-ATPase concentration and thus on the capacity for active uptake of potassium was evaluated. In 15 conscripts the Na,K-pump concentration was determined in vastus lateralis muscle by measurement of 3H-ouabain binding to intact muscle biopsies before and after 10 weeks of physical training. All subjects had improved physical fitness, body weight was reduced by 3% (P less than 0.001), Cooper's test showed an improvement by 7% (P less than 0.05) and leg circumference 10 cm above the knee joint had increased by 3% (P less than 0.001). Mean Na,K-pump concentration +/- S.E.M. in vastus lateralis muscles was 308 +/- 13 (N = 15) and 300 +/- 7 (N = 15) pmol x g wet wt.-1 (P less than 0.60) before and after training, respectively. Thus, in human subjects moderate improvement of physical performance may occur without any change in skeletal muscle Na,K-pump concentration. It may be, however, that change in the acute regulation of skeletal muscle Na,K-ATPase--i.e. augmented activity of existing Na,K-pumps--may reduce exercise-induced rise in plasma potassium concentration after moderate physical conditioning. Since the circumference of the legs had increased, the total amount of Na,K-ATPase in the legs had probably increased. Hence, moderate training may induce muscle hypertrophy with a balanced synthesis of muscle mass and Na,K-pumps.

摘要

评估了适度训练对人体骨骼肌钠钾 - ATP酶浓度以及钾主动摄取能力的假定影响。在15名应征入伍者中,通过测量完整肌肉活检组织中3H - 哇巴因的结合量,在为期10周的体育训练前后测定股外侧肌中的钠钾泵浓度。所有受试者的身体素质均有所改善,体重减轻了3%(P<0.001),库珀测试显示提高了7%(P<0.05),膝关节上方10厘米处的腿围增加了3%(P<0.001)。训练前后股外侧肌中钠钾泵浓度的平均值±标准误分别为308±13(N = 15)和300±7(N = 15)pmol×g湿重-1(P<0.60)。因此,在人体受试者中,身体机能适度改善时骨骼肌钠钾泵浓度可能无任何变化。然而,骨骼肌钠钾 - ATP酶急性调节的变化——即现有钠钾泵活性增强——可能会在适度身体锻炼后降低运动诱导的血浆钾浓度升高。由于腿部周长增加,腿部钠钾 - ATP酶的总量可能增加。因此,适度训练可能会诱导肌肉肥大,使肌肉量和钠钾泵的合成保持平衡。

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