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尼莫地平对犬、猴和人脑血管体外收缩性的影响。

Effects of nimodipine on in vitro contractility of cerebral arteries of dog, monkey, and man.

作者信息

Nosko M, Krueger C A, Weir B K, Cook D A

出版信息

J Neurosurg. 1986 Sep;65(3):376-81. doi: 10.3171/jns.1986.65.3.0376.

Abstract

Cerebrovascular spasm in the cynomolgus monkey does not appear to be modified by nimodipine. It is possible that cerebral arteries from this species are unusually resistant to the action of calcium antagonists. To test this hypothesis, parallel studies on the in vitro response of cerebral arteries from monkey, dog, and man have been carried out. Rings of basilar or middle cerebral artery were tested with potassium chloride, noradrenaline, 5-hydroxytryptamine, prostaglandin F2 alpha, and hemoglobin. The responses were then reexamined in the presence of various concentrations of nimodipine. There is a significant variation among species in sensitivity to nimodipine, the vessels from the monkey being more resistant to nimodipine than those from other species. There is, as expected, a considerable difference in the ability of nimodipine to block the different agonists. Responses to potassium chloride are blocked by low concentrations of nimodipine in all species, whereas noradrenaline and 5-hydroxytryptamine are more resistant. It is noteworthy that, in all species tested, hemoglobin and prostaglandin F2 alpha were antagonized poorly even by higher concentrations of nimodipine. If these agonists play a major role in the development of vasospasm and subsequent delayed ischemia, it may be that the calcium antagonists exert a beneficial effect by some mechanism other than dilation of spastic arteries.

摘要

食蟹猴的脑血管痉挛似乎不受尼莫地平的影响。该物种的脑动脉可能对钙拮抗剂的作用具有异常的抗性。为了验证这一假设,已对来自猴、狗和人的脑动脉的体外反应进行了平行研究。用氯化钾、去甲肾上腺素、5-羟色胺、前列腺素F2α和血红蛋白对基底动脉或大脑中动脉环进行测试。然后在存在不同浓度尼莫地平的情况下重新检查反应。不同物种对尼莫地平的敏感性存在显著差异,猴的血管比其他物种的血管对尼莫地平更具抗性。正如预期的那样,尼莫地平阻断不同激动剂的能力存在相当大的差异。在所有物种中,低浓度的尼莫地平就能阻断对氯化钾的反应,而去甲肾上腺素和5-羟色胺则更具抗性。值得注意的是,在所有测试物种中,即使是高浓度的尼莫地平也很难拮抗血红蛋白和前列腺素F2α。如果这些激动剂在血管痉挛和随后的迟发性缺血的发展中起主要作用,那么钙拮抗剂可能通过除扩张痉挛动脉以外的某种机制发挥有益作用。

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