Hallén J, Saltin B, Sejersted O M
Department of Physiology, National Institute of Occupational Health, Oslo, Norway.
Am J Physiol. 1996 Jun;270(6 Pt 2):R1347-54. doi: 10.1152/ajpregu.1996.270.6.R1347.
Infusion of the beta 2-adrenoceptor agonist terbutaline will cause an activation of the Na(+)-K+ pump that leads to lowering of plasma K+ concentration and intracellular Na+ concentration. The present study examines whether these changes will affect the K+ homeostasis during subsequent exercise. Two-legged knee-extension exercise was carried out at low (40 W) and high (75 W) power for 8 min in six healthy, male subjects before (control) and during intravenous infusion of terbutaline (priming dose 500 micrograms, sustained dose 4.1 micrograms/min). Catheters in the femoral vein and artery allowed blood sampling and continuous recording of femoral venous plasma K+ concentration ([K+]fv) by means of a pliable, K(+)-sensitive electrode. Leg blood flow was measured by bolus injections of indocyanine green. Terbutaline decreased arterial K+ concentration by 0.83 mmol/l. The femoral veno-arterial concentration difference for K+ and loss rates of K+ were not significantly affected by terbutaline, but leg blood flow during steady-state exercise increased by approximately 0.5 l/min (P < 0.05). However, at cessation of exercise terbutaline significantly attenuated the rate of fall of [K+]fv at high power from 63 +/- 6 to 38 +/- 6 micromol. l-1.s-1, indicating a reduced reuptake rate of K+. The loss rate of K+ from the leg peaked after around 40 s of exercise, pointing to a rapid activation of reuptake rate of K+. We conclude that, during terbutaline infusion, the reuptake rate of K+ in exercising muscles is attenuated.
输注β2肾上腺素能激动剂特布他林会激活钠钾泵,导致血浆钾浓度和细胞内钠浓度降低。本研究旨在探讨这些变化是否会影响后续运动期间的钾稳态。六名健康男性受试者在静脉输注特布他林(初始剂量500微克,维持剂量4.1微克/分钟)之前(对照)和期间,以低功率(40瓦)和高功率(75瓦)进行双腿伸膝运动8分钟。股静脉和动脉中的导管用于采血,并通过柔软的钾敏感电极连续记录股静脉血浆钾浓度([K+]fv)。通过推注吲哚菁绿测量腿部血流量。特布他林使动脉钾浓度降低了0.83毫摩尔/升。特布他林对钾的股静脉-动脉浓度差和钾流失率没有显著影响,但稳态运动期间的腿部血流量增加了约0.5升/分钟(P<0.05)。然而,运动停止时,特布他林显著减缓了高功率下[K+]fv的下降速率,从63±6降至38±6微摩尔·升-1·秒-1,表明钾的再摄取速率降低。钾从腿部的流失率在运动约40秒后达到峰值,表明钾再摄取速率迅速激活。我们得出结论,在输注特布他林期间,运动肌肉中钾的再摄取速率会减弱。