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心肌中离子转运与哇巴因作用的相互依存关系。

Interdependence of ion transport and the action of quabain in heart muscle.

作者信息

Bentfeld M, Lüllmann H, Peters T, Proppe D

出版信息

Br J Pharmacol. 1977 Sep;61(1):19-27. doi: 10.1111/j.1476-5381.1977.tb09735.x.

Abstract

1 The influence of ouabain (0.4 muM) on contractile force and cellular Na and K concentrations was investigated in isolated left atria of the guinea-pig at rest and at different beat frequencies. Simultaneously the binding of ouabain to the tissue was determined.2 Strict dependence of rates of onset of positive iontropic action and of binding of ouabain on beat frequency are limited to conditions where no alterations of cellular Na and K concentrations occur. A correlation was observed between sodium flux per unit time and the development of positive inotropism and binding to the receptors of ouabain.3 Ouabain exerts its positive inotropic effect without affecting the intracellular Na and K concentrations in spite of the fact that under these conditions even the majority of binding sites, i.e. Na-K-adenosine triphosphatases (Na-K-ATPases), are occupied by the drug. The positive inotropic effect may be explained by a ouabain-induced conformational alteration of the Na-K-ATPase which leads to structural alterations of the plasmalemma connected with an increased availability of coupling calcium.4 Increasing the frequency of stimulation over a critical value, which appears to be determined by an overloading of the Na pump, induces a decrease in contractile force, cellular accumulation of Na and loss of K, and eventually contracture.5 The rate of binding of ouabain appears to depend on the actual concentration of particular conformations of the Na-K-ATPase with high affinity for ouabain. These conformations transiently occur during a pumping cycle and their concentration may therefore be dependent on the frequency of cycling which in turn is determined by the frequency of contraction.6 Ouabain can easily be washed out from the tissue irrespective of the condition of the muscle. If, however, the intracellular Na and K homeostasis is impaired, the inhibition of the pump persists even if ouabain is released from the binding sites upon wash-out. It is suggested that the inhibition of the pump is maintained by an increased intracellular Ca ion concentration and a depletion of ATP.7 A kinetic model is proposed for the interaction between cardiac glycosides and the Na-K-ATPase in intact heart muscle cells.

摘要

1 研究了哇巴因(0.4μM)对豚鼠离体左心房在静息状态及不同搏动频率下收缩力和细胞内钠、钾浓度的影响。同时测定了哇巴因与组织的结合情况。

2 正性变力作用的起效速率和哇巴因的结合速率对搏动频率的严格依赖性仅限于细胞内钠、钾浓度无变化的情况。观察到单位时间内的钠通量与正性变力作用的发展以及与哇巴因受体的结合之间存在相关性。

3 尽管在这些条件下即使大多数结合位点,即钠钾 - 三磷酸腺苷酶(Na - K - ATP酶)被药物占据,哇巴因仍可在不影响细胞内钠、钾浓度的情况下发挥其正性变力作用。正性变力作用可能是由于哇巴因诱导的Na - K - ATP酶构象改变所致,这导致质膜结构改变并伴有偶联钙可用性增加。

4 将刺激频率增加到超过一个临界值(该临界值似乎由钠泵过载决定)会导致收缩力下降、细胞内钠积累和钾丢失,最终导致挛缩。

5 哇巴因的结合速率似乎取决于对哇巴因具有高亲和力的Na - K - ATP酶特定构象的实际浓度。这些构象在泵浦循环中短暂出现,因此其浓度可能取决于循环频率,而循环频率又由收缩频率决定。

6 无论肌肉状态如何,哇巴因都能很容易地从组织中洗脱。然而,如果细胞内钠、钾稳态受损,即使在洗脱后哇巴因从结合位点释放,泵的抑制作用仍会持续。有人认为泵的抑制作用是由细胞内钙离子浓度增加和ATP耗竭维持的。

7 提出了一个关于强心苷与完整心肌细胞中Na - K - ATP酶相互作用的动力学模型。

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