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在某些脑缺氧和缺血动物模型中,吡拉西坦与双氢麦角克碱之间的协同相互作用。

Synergistic interactions between piracetam and dihydroergocristine in some animal models of cerebral hypoxia and ischaemia.

作者信息

Berga P, Beckett P R, Roberts D J, Llenas J, Massingham R

出版信息

Arzneimittelforschung. 1986 Sep;36(9):1314-20.

PMID:3098253
Abstract

In pharmacological screening tests for activity against the cerebral insults of hypoxia and ischaemia induced by MgCl2 or decapitation in mice, the combination of piracetam and dihydroergocristine has been shown to produce synergistic effects in prolonging the survival time. This was not the case in the model of histiocytic anoxia induced by KCN. Using an optimal combination of piracetam and dihydroergocristine (533:1, Diemil) significant increases in cerebral resistance to hypercapnic anoxia and reductions in the duration of the ensuing electrical silence on the electrocorticogram have been demonstrated in the rat. The same combination was also effective in antagonizing the memory ablating effects of anoxia in rats subjected to electric footshocks during a standard passive avoidance response. The absence of clear effects on gross cerebral blood flow and metabolism, together with considerations of the known pharmacological properties of the two components of the combination and the effects of standard drugs in the models used, lead to the conclusion that the explanation of the observed synergism probably lies in complimentary actions at the level of the cerebral neurones and is independent of simple vasodilation.

摘要

在针对小鼠因氯化镁或断头诱导的缺氧和缺血性脑损伤的活性进行的药理筛选试验中,已表明吡拉西坦和双氢麦角克碱的组合在延长存活时间方面具有协同作用。在氰化钾诱导的组织细胞性缺氧模型中则并非如此。使用吡拉西坦和双氢麦角克碱的最佳组合(533:1,迪米乐),已证实在大鼠中,大脑对高碳酸血症性缺氧的耐受性显著增加,并且脑电图上随后出现的电静息持续时间缩短。相同的组合在拮抗遭受标准被动回避反应期间电足击的大鼠缺氧引起的记忆消除作用方面也有效。对脑血流量和代谢无明显影响,再结合该组合中两种成分的已知药理特性以及所用模型中标准药物的作用进行考虑,得出结论:观察到的协同作用的解释可能在于在大脑神经元水平上的互补作用,并且独立于单纯的血管舒张作用。

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