Kim D, Barry W H, Smith T W
J Pharmacol Exp Ther. 1984 Nov;231(2):326-33.
To define further the mechanism of positive inotropic action of cardiac glycosides, the temporal relationships among ouabain binding, sodium pump inhibition and positive inotropy were examined using cultured chick embryo ventricular cells. In K+-free medium, specific [3H]ouabain binding to intact cells followed pseudo first-order kinetics with saturation of binding sites occurring at 1 microM ouabain. The KD values calculated from the association and dissociation rate constants were 1.4 and 4.9 X 10(-7) M, respectively, in K+-free and 4 mM K+ medium. The Scatchard plot of binding in K+-free medium was linear, consistent with the presence of a single class of binding sites (KD = 1.3 X 10(-7) M). In 4 mM K+, 0.1 microM ouabain occupied 10% of the total binding sites and failed to produce an inotropic effect, inhibit 42K+ uptake or alter [Na+]i. Exposure of cells to 1 microM ouabain caused a significant increase in contractile state after 30 sec, reaching a plateau after 7 min with 50 +/- 6% augmentation of the amplitude of cell motion; the 42K+ uptake rate was concurrently inhibited by 36% accompanied by a 35% increase in [Na+]i and occupation of 38% of total ouabain binding sites. The initial rate of 42K+ uptake in cells loaded with Na+ by incubation in K+-free medium was 4 times greater than that observed without Na+ loading. These results indicate that more than 10% of sodium pump sites must be inhibited to produce an appreciable change in the rate of monovalent cation transport, [Na+]i or contractile state, due to the reserve capacity of uninhibited sodium pumps.(ABSTRACT TRUNCATED AT 250 WORDS)
为了进一步明确强心苷正性肌力作用的机制,利用培养的鸡胚心室细胞研究了哇巴因结合、钠泵抑制和正性肌力作用之间的时间关系。在无钾培养基中,特异性[3H]哇巴因与完整细胞的结合遵循假一级动力学,结合位点在1μM哇巴因时饱和。根据结合和解离速率常数计算出的KD值,在无钾和4mM钾培养基中分别为1.4和4.9×10(-7)M。无钾培养基中结合的Scatchard图呈线性,与单一类别的结合位点(KD = 1.3×10(-7)M)的存在一致。在4mM钾中,0.1μM哇巴因占据总结合位点的10%,未能产生正性肌力作用、抑制42K+摄取或改变[Na+]i。细胞暴露于1μM哇巴因后30秒收缩状态显著增加,7分钟后达到平台期,细胞运动幅度增加50±6%;同时42K+摄取率被抑制36%,[Na+]i增加35%,占据总哇巴因结合位点的38%。通过在无钾培养基中孵育加载钠的细胞,其42K+摄取的初始速率比未加载钠时观察到的速率高4倍。这些结果表明,由于未受抑制的钠泵的储备能力,必须抑制超过10%的钠泵位点才能使单价阳离子转运速率、[Na+]i或收缩状态产生明显变化。(摘要截断于250字)