首页> 外文OA文献 >Exercise-induced changes in plasma composition increase erythrocyte Na+, K+-ATPase, but not Na+–K+–2Cl− cotransporter, activity to stimulate net and unidirectional K+ transport in humans
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Exercise-induced changes in plasma composition increase erythrocyte Na+, K+-ATPase, but not Na+–K+–2Cl− cotransporter, activity to stimulate net and unidirectional K+ transport in humans

机译:运动引起的血浆成分变化会增加红细胞的Na +,K + -ATPase,但不会增加Na + –K + –2Cl-协同转运蛋白的活性,从而刺激人类净和单向K +转运

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摘要

We tested the hypothesis that exercise-induced changes in plasma composition result in peak stimulation of erythrocyte unidirectional K+ (JK,in) and net K+ (JK,net) transport within the first 120 s. In experimental series 1 (7 men; 2 women), plasma [K+] was continuously measured in vitro (37 °C) after the addition of red blood cells (RBCs) obtained from rested subjects (resting RBCs) into an exercise-simulated plasma (ESP; increased plasma osmolality, [K+], [H+], [lactate] and [adrenaline] (epinephrine)), and JK,net calculated. In experimental series 2 (7 men; 4 women), resting RBCs were incubated in true exercise plasma (TEP) obtained after two 30 s bouts of high intensity leg cycling exercise to determine JK,net and JK,in (via RBC 86Rb accumulation). JK,net of resting RBCs increased from 0.9 ± 28.7 in resting plasma to 285 ± 164 mmol (l RBCs)−1 h−1 in ESP and to 178 ± 60 mmol (l RBCs)−1 h−1 after 10 s in TEP. Both JK,net and JK,in peaked within 10 s of incubation and decreased rapidly during the initial 120 s. The use of inhibitors for the Na+,K+-ATPase (ouabain) and the Na+-K+-2Cl− cotransporter (NKCC; bumetanide) indicated that rapid increases in JK,in and JK,net upon incubation of resting RBCs in TEP were due primarily to increased Na+,K+-ATPase activity; the NKCC appeared to be involved only when the Na+,K+-ATPase was blocked. It is concluded that RBCs rapidly increase JK,in and JK,net in response to exercise-induced changes in plasma composition.
机译:我们测试了以下假设:运动引起的血浆成分变化导致在最初的120 s内刺激红细胞单向K +(JK,in)和净K +(JK,net)传输达到峰值。在实验系列1(7名男性; 2名女性)中,在将从静止的受试者(静止的RBC)中获得的红细胞(RBC)添加到运动模拟血浆中后,在体外(37°C)连续测量血浆[K +] (ESP;增加的血浆渗透压,[K +],[H +],[乳酸]和[肾上腺素](肾上腺素)),并计算JK,net。在实验系列2(7名男性; 4名女性)中,静息的RBC在真实的运动血浆(TEP)中孵育,两次血浆经过两次高强度的腿部循环运动后获得,以确定JK,net和JK,in(通过RBC 86Rb积累) 。 JK,静息RBC净值从静息血浆中的0.9±28.7增加到ESP中的285±164 mmol(l RBCs)-1 h-1和在TEP中10 s后增加到178±60 mmol(l RBCs)-1 h-1 。 JKnet和JKin在孵育的10 s内达到峰值,在最初的120 s内迅速下降。使用Na +,K + -ATPase(ouabain)和Na + -K + -2Cl-辅助转运蛋白(NKCC;布美他尼)的抑制剂表明,静息RBC在TEP中孵育后,JK,in和JK,net迅速增加。增加Na +,K + -ATPase活性;仅当Na +,K + -ATPase被阻断时,NKCC才参与其中。结论是,红细胞迅速增加JK,in和JK,net,以响应运动引起的血浆成分变化。

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