Neto F R, Narahashi T
J Pharmacol Exp Ther. 1976 Nov;199(2):454-63.
Benzoic acid, salicylic acid and 5-bromosalicylic acid have been studied for their mechanism of action on crayfish and squid giant axons. External application of 0.1 to 0.5 mM 5-bromosalicylic acid prolonged the falling phase of the action potential, and at concentrations higher than 1.5 mM, nervous conduction was blocked. Boltage clamp analyses showed that 5-bromosalicylic acid reduced both peak transient sodium conductance and steady-state potassium conductance. The curves relating the peak and steady-state conductances to membrane potential were shifted in the direction of depolarization. The time constant for the activation of sodium current (taum) was not affected by 5-bromosalicylic acid, whereas the time constant for the sodium inactivation (tauh) was greatly increased. The steady-state sodium inactivation curve (h infinity) was shifted in the hyperpolarizing direction. The rate constants alpha h and beta h were decreased. The rate of activation of potassium current was reduced. The block of peak transient conductance by externally applied 5-bromosalicylic acid was largely reversed by internal washing suggesting that the drug acts on a membrane site more easily accessible from inside than from outside. Salicylic and benzoic acids were much less potent than 5-bromosalicylic acid, reducing peak conductance by 12.5 and 3%, and steady-state conductance by 8.7 and 7%, respectively, at a concentration of 10 mM.
已对苯甲酸、水杨酸和5-溴水杨酸作用于小龙虾和鱿鱼巨轴突的作用机制进行了研究。外部施加0.1至0.5 mM的5-溴水杨酸会延长动作电位的下降期,且浓度高于1.5 mM时,神经传导会被阻断。电压钳分析表明,5-溴水杨酸会降低峰值瞬时钠电导和稳态钾电导。将峰值电导和稳态电导与膜电位相关联的曲线向去极化方向移动。钠电流激活的时间常数(taum)不受5-溴水杨酸影响,而钠失活的时间常数(tauh)则大幅增加。稳态钠失活曲线(h infinity)向超极化方向移动。速率常数alpha h和beta h降低。钾电流的激活速率降低。外部施加的5-溴水杨酸对峰值瞬时电导的阻断在很大程度上可通过内部冲洗逆转,这表明该药物作用于一个从内部比从外部更容易接近的膜位点。水杨酸和苯甲酸的效力远低于5-溴水杨酸,在浓度为10 mM时,分别使峰值电导降低12.5%和3%,稳态电导降低8.7%和7%。