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美沙酮对鱿鱼巨纤维叶神经元钾离子电流的阻断作用

Methadone block of K+ current in squid giant fiber lobe neurons.

作者信息

Horrigan F T, Gilly W F

机构信息

Hopkins Marine Station of Stanford University, Department of Biological Sciences, Pacific Grove, California 93950, USA.

出版信息

J Gen Physiol. 1996 Feb;107(2):243-60. doi: 10.1085/jgp.107.2.243.

Abstract

Voltage-dependent ionic currents were recorded from squid giant fiber lobe neurons using the whole-cell patch-clamp technique. When applied to the bathing solution, methadone was found to block IK, I Na and I Ca. Both I Na and I Ca were reduced without apparent change in kinetics and exhibited IC(50)'s of 50-100 and 250-500 mu M, respectively, at +10 mV. In contrast, IK was reduced in a time-dependent manner that is well fit by a simple model of open channel block (K(D)= 32+/- or 2 mu M, +60 mV, 10 degrees Celsius). The mechanism of I(K) block was examined in detail and involves a direct action of methadone, a tertiary amine, on K channels rather than an opioid receptor-mediated pathway. The kinetics of I(K) block resemble those reported for internally applied long chain quaternary ammonium (QA) compounds; and recovery from I(K) block is QA-like in its slow time course and strong dependence on holding potential. A quaternary derivative of methadone (N-methyl-methadone) only reproduced the effects of methadone on I(K) when included in the pipette solution; this compound was without effect when applied externally. I(K) block thus appears to involve diffusion of methadone into the cytoplasm and occlusion of the open K channel at the internal QA blocking site by the protonated form of the drug. This proposed mode of action is supported by the pH and voltage dependence of block as well as by the observation that high external K+ speeds the rate of drug dissociation. In addition, the effect of methadone on I(K) evoked during prolonged (300 ms) depolarizations suggests that methadone block may interfere with endogenous K+ channel inactivation. The effects of temperature, methadone stereoisomers, and the methadone-like drugs propoxyphene and nor-propoxyphene on IK block were examined. Methadone was also found to block I(K) in GH3 cells and in chick myoblasts.

摘要

采用全细胞膜片钳技术记录鱿鱼巨纤维叶神经元的电压依赖性离子电流。当将美沙酮应用于灌流液时,发现它能阻断IK、INa和ICa。INa和ICa均降低,动力学无明显变化,在+10 mV时,其半数抑制浓度(IC50)分别为50 - 100 μM和250 - 500 μM。相比之下,IK以时间依赖性方式降低,这与开放通道阻断的简单模型拟合良好(解离常数KD = 32 ± 2 μM,+60 mV,10摄氏度)。详细研究了IK阻断的机制,发现其涉及叔胺美沙酮对钾通道的直接作用,而非阿片受体介导的途径。IK阻断的动力学类似于内部应用的长链季铵(QA)化合物所报道的情况;从IK阻断中恢复的过程在时间进程上缓慢且强烈依赖于钳制电位,类似于QA。美沙酮的季铵衍生物(N - 甲基 - 美沙酮)只有在包含于电极内液时才重现美沙酮对IK的作用;该化合物外部应用时无作用。因此,IK阻断似乎涉及美沙酮扩散到细胞质中,并通过药物的质子化形式在内部QA阻断位点封闭开放的钾通道。这种提出的作用模式得到了阻断的pH和电压依赖性以及高细胞外钾离子加速药物解离速率这一观察结果的支持。此外,美沙酮对长时间(300 ms)去极化期间诱发的IK的影响表明,美沙酮阻断可能会干扰内源性钾通道失活。研究了温度、美沙酮立体异构体以及美沙酮样药物丙氧芬和去甲丙氧芬对IK阻断的影响。还发现美沙酮能阻断GH3细胞和鸡成肌细胞中的IK。

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