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钾诱导舒张作为血管平滑肌中钠钾ATP酶活性的指标。

Potassium-induced relaxation as an indicator of Na+-K+ ATPase activity in vascular smooth muscle.

作者信息

Webb R C, Bohr D F

出版信息

Blood Vessels. 1978;15(1-3):198-207. doi: 10.1159/000158166.

Abstract

Helical strips of rat tail artery were observed to relax in response to potassium after contraction induced by 10(-7) g/ml norepinephrine in potassium-free solution. After several minutes of relaxation, the strips showed an abrupt redevelopment of tension. The amplitude of the potassium-induced relaxation was employed as an index of the activity of the electrogenic sodium-potassium pump and hence of the Na+-K+ ATPase. This assumption seemed justified because the observed amplitude of potassium-induced relaxation paralleled known effects of the following variables on Na+-K+ ATPase: (1) intracellular sodium concentration; (2) ouabain administration; (3) magnesium; (4) temperature, and (5) potassium concentration. The relaxation that occurred in response to potassium is suggested to be due to an enhanced Na+-K+ ATPase resulting in increased electrogenic transport of sodium and potassium and, consequently, hyperpolarization. We propose that potassium-induced relaxation of rat tail artery may be used as a functional indicator of Na+-K+ ATPase activity in vascular smooth muscle.

摘要

在无钾溶液中,当大鼠尾动脉螺旋条被10(-7)克/毫升去甲肾上腺素诱导收缩后,观察到其对钾有舒张反应。在舒张几分钟后,条带显示出张力突然重新出现。钾诱导舒张的幅度被用作电生性钠钾泵活性以及Na+-K+ ATP酶活性的指标。这一假设似乎合理,因为观察到的钾诱导舒张幅度与以下变量对Na+-K+ ATP酶的已知作用平行:(1)细胞内钠浓度;(2)哇巴因给药;(3)镁;(4)温度,以及(5)钾浓度。因钾而发生的舒张被认为是由于Na+-K+ ATP酶增强,导致钠和钾的电生性转运增加,从而引起超极化。我们提出,钾诱导的大鼠尾动脉舒张可用作血管平滑肌中Na+-K+ ATP酶活性的功能指标。

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