Hatae J
Jpn J Physiol. 1982;32(4):609-25. doi: 10.2170/jjphysiol.32.609.
The effects of lanthanum on the resting membrane potential, action potential, membrane resistance, twitch tension, and potassium contracture were investigated and the localization of the drug was studied electron microscopically in isolated frog ventricular muscle. Lanthanum in concentration of 0.2 to 5 mM decreased the resting potential by about 5-8 mV, which was accompanied by an increase in the membrane resistance of about 43% for the depolarizing and 40% for the hyperpolarizing direction. Lanthanum caused a decrease in height and a prominent shortening of the action potential, and also, a depression of the plateau level. In addition, it increased the threshold for action potential generation depending on its concentration. The slow response action potential was inhibited by lanthanum in parallel with twitch inhibition. This finding suggests that the twitch inhibition resulted from the suppression of the slow inward calcium current. In contrast, potassium contracture was not inhibited by lanthanum. When the muscle preparation was treated with neuraminidase, the twitch inhibition caused by lanthanum was strongly depressed. Electron microscopic observation revealed that the precipitates of lanthanum were localized on the external lamina of myocytes as well as in the extracellular spaces but could never be found within the cytoplasm. No such precipitates could be detected in the neuraminidase-treated muscle. From these results it is suggested that lanthanum takes the place of calcium at the membrane surface: it modifies permeabilities to sodium, potassium and calcium ions and the excitation-contraction coupling of the ventricular muscle by replacing calcium bound to the membrane-surface.
研究了镧对离体蛙心室肌静息膜电位、动作电位、膜电阻、单收缩张力和钾挛缩的影响,并通过电子显微镜研究了药物的定位。浓度为0.2至5 mM的镧使静息电位降低约5 - 8 mV,同时膜电阻在去极化方向增加约43%,在超极化方向增加约40%。镧导致动作电位高度降低和明显缩短,并且使平台期水平降低。此外,它根据浓度增加动作电位产生的阈值。镧抑制慢反应动作电位的同时也抑制单收缩。这一发现表明单收缩抑制是由于慢内向钙电流的抑制所致。相反,钾挛缩不受镧的抑制。当肌肉标本用神经氨酸酶处理后,镧引起的单收缩抑制被强烈抑制。电子显微镜观察显示,镧的沉淀物定位于心肌细胞的外板以及细胞外间隙,但在细胞质内从未发现。在神经氨酸酶处理的肌肉中未检测到此类沉淀物。从这些结果表明,镧在膜表面取代了钙:它通过取代与膜表面结合的钙来改变对钠、钾和钙离子的通透性以及心室肌的兴奋 - 收缩偶联。