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十烃季铵与六甲铵或维库溴铵在大鼠体内的相互作用:等效线图分析

Interaction of decamethonium with hexamethonium or vecuronium in the rat: an isobolographic analysis.

作者信息

Redai I, Richards K M, England A J, Feldman S A

机构信息

Magill Department of Anaesthetics, Chelsea and Westminster Hospital, Charing Cross and Westminster Medical School, London, United Kingdom.

出版信息

Anesth Analg. 1995 Oct;81(4):768-72. doi: 10.1097/00000539-199510000-00019.

Abstract

We used isobolographic analysis to investigate the interaction of decamethonium with either hexamethonium or vecuronium in the rat phrenic nerve hemidiaphragm preparation. EC50 values of decamethonium, hexamethonium, and vecuronium were (mean +/- SEM) 47.36 +/- 9.58 microM, 4.27 +/- 0.53 mM, and 5.19 +/- 1.17 microM, respectively. Combinations of drugs in concentrations corresponding to the 1:2, 1:1, and 2:1 ratios of their EC50 values were used to determine three points of each isobole. Decamethonium and hexamethonium showed antagonism: significant deviations from the line of additivity were found at EC50 ratios of 2:1 and 1:1 (P < 0.01 and P < 0.05, respectively) indicating that hexamethonium is a potent antagonist of decamethonium. For decamethonium and vecuronium none of the three points on the isobole was significantly different from the corresponding point on the line of additivity. Hexamethonium is known to be a weak antagonist at the postsynaptic nicotinic acetylcholine receptor but a potent antagonist at the presynaptic nicotinic receptor. Vecuronium is a more potent antagonist at the postsynaptic nicotinic receptor but a much weaker antagonist at the presynaptic site. It was postulated that in the rat the primary site of action of decamethonium is at the presynaptic nerve terminal. Our findings suggest that presynaptic rather than postsynaptic potency of a nondepolarizing drug determines ability to antagonize the effect of a depolarizing drug in the rat.

摘要

我们采用等效线图分析法,在大鼠膈神经 - 半膈肌标本中研究十烃季铵与六甲季铵或维库溴铵的相互作用。十烃季铵、六甲季铵和维库溴铵的半数有效浓度(EC50)值分别为(平均值±标准误)47.36±9.58微摩尔/升、4.27±0.53毫摩尔/升和5.19±1.17微摩尔/升。使用对应于其EC50值1:2、1:1和2:1比例的药物组合来确定每条等效线的三个点。十烃季铵和六甲季铵表现出拮抗作用:在EC50比例为2:1和1:1时,发现与相加线有显著偏差(分别为P < 0.01和P < 0.05),表明六甲季铵是十烃季铵的强效拮抗剂。对于十烃季铵和维库溴铵,等效线上的三个点均与相加线上的对应点无显著差异。已知六甲季铵在突触后烟碱型乙酰胆碱受体处是弱拮抗剂,但在突触前烟碱型受体处是强效拮抗剂。维库溴铵在突触后烟碱型受体处是更强效的拮抗剂,但在突触前部位是弱得多的拮抗剂。据推测,在大鼠中,十烃季铵的主要作用部位是突触前神经末梢。我们的研究结果表明,非去极化药物的突触前而非突触后效力决定了其拮抗大鼠中去极化药物作用的能力。

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