Riccioppo Neto F
Eur J Pharmacol. 1980 Nov 21;68(2):155-62. doi: 10.1016/0014-2999(80)90316-7.
The effects of sodium salicylate, sodium benzoate and 5-bromo salicylate on nerve fibres of the rabbit cervical vagus and of the frog sciatic nerve 'in vitro' were studied and using the single sucrose gap technique. The application of 5-bromo salicylate in concentrations between 2 X 10(-3) to 5 X 10(-3) M induced a slow fall in spike height accompanied by a small hyperpolarization (0.5--2.0 mV). Higher concentrations (1 X 10(-2)--2 X 10(-2) M) produced depolarization and a rapid block of nervous conduction. Concentrations of 1 X 10(-2)--2 X 10(-2) M of sodium salicylate were needed to induce the same hyperpolarizing and slow blocking effects in non-myelinated nerve fibres. Myelinated fibres of the frog sciatic nerve were also blocked by concentrations greater than 1 X 10(-2) M of 5-bromo salicylate, but showed an increase in the amplitude of the compound action potential and a prolonged falling phase when superfused with concentrations around 5 X 10(-3) M. A frequency-dependent decrease in the action potential amplitude was observed with sodium salicylate and 5-bromo salicylate and was shown to be more easily induced in non-myelinated than in myelinated fibres. 5-Bromo salicylate (2 X 10(-2) M) and 2,4-dinitrophenol (1 X 10(-4) M) reduced the amplitude and the rate constant of decay of the hyperpolarization produced by tetanic stimulation of non-myelinated nerve fibres. Sodium salicylate (2 X 10(-2) M) increased the time constant of decay of the hyperpolarization of the potassium-activated response and slightly decreased its amplitude. Sodium salicylate was 3--5 times less potent than 5-bromo salicylate; while sodium benzoate was practically ineffective in producing the phenomena under study.
采用单蔗糖间隙技术,研究了水杨酸钠、苯甲酸钠和5-溴水杨酸盐对家兔颈迷走神经及青蛙坐骨神经“体外”神经纤维的影响。应用浓度在2×10⁻³至5×10⁻³M之间的5-溴水杨酸盐会导致动作电位高度缓慢下降,并伴有轻微超极化(0.5 - 2.0 mV)。更高浓度(1×10⁻² - 2×10⁻²M)会产生去极化并迅速阻断神经传导。需要1×10⁻² - 2×10⁻²M浓度的水杨酸钠才能在无髓神经纤维中诱导出相同的超极化和缓慢阻断效应。青蛙坐骨神经的有髓纤维在5-溴水杨酸盐浓度大于1×10⁻²M时也会被阻断,但在5×10⁻³M左右的浓度下灌流时,复合动作电位的幅度会增加,下降相延长。水杨酸钠和5-溴水杨酸盐会导致动作电位幅度呈频率依赖性降低,并且在无髓纤维中比在有髓纤维中更容易诱导出现这种情况。5-溴水杨酸盐(2×10⁻²M)和2,4-二硝基苯酚(1×10⁻⁴M)会降低强直刺激无髓神经纤维产生的超极化的幅度和衰减速率常数。水杨酸钠(2×10⁻²M)会增加钾激活反应超极化的衰减时间常数,并略微降低其幅度。水杨酸钠的效力比5-溴水杨酸盐低3至5倍;而苯甲酸钠在产生所研究的现象方面实际上没有效果。