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金刚烷衍生物的脑血管和神经保护作用

Cerebrovascular and neuroprotective effects of adamantane derivative.

作者信息

Mirzoyan Ruben S, Gan'shina Tamara S, Maslennikov Denis V, Kovalev Georgy I, Zimin Ivan A, Pyatin Boris M, Avdyunina Nina I, Kukhtarova Anna M, Khostikyan Nelly G, Meliksetyan Vahe S, Alikhanyan Cristina B, Mirzoyan Narine R

机构信息

Zakusov Institute of Pharmacology RAMS, 8 Baltiyskaya Street, Moscow 125315, Russia.

Yerevan State Medical University after Mkhitar Heratsi, 2 Koryun Street, 0025 Yerevan, Armenia.

出版信息

Biomed Res Int. 2014;2014:586501. doi: 10.1155/2014/586501. Epub 2014 Mar 20.

Abstract

OBJECTIVES

The influence of 5-hydroxyadamantane-2-on was studied on the rats' brain blood flow and on morphological state of brain tissue under the condition of brain ischemia. The interaction of the substance with NMDA receptors was also studied.

METHODS

Study has been implemented using the methods of local blood flow registration by laser flowmeter, [(3)H]-MK-801binding, and morphological examination of the brain tissue. We used the models of global transient ischemia of the brain, occlusion of middle cerebral artery, and hypergravity ischemia of the brain.

RESULTS

Unlike memantine, antagonist of glutamatergic receptors, the 5-hydroxyadamantane-2-on does not block NMDA receptors but enhances the cerebral blood flow of rats with brain ischemia. This effect is eliminated by bicuculline. Under conditions of permanent occlusion of middle cerebral artery, 5-hydroxyadamantane-2-on has recovered compensatory regeneration in neural cells, axons, and glial cells, and the number of microcirculatory vessels was increased. 5-Hydroxyadamantane-2-on was increasing the survival rate of animals with hypergravity ischemia.

CONCLUSIONS

5-Hydroxyadamantane-2-on, an adamantane derivative, which is not NMDA receptors antagonist, demonstrates significant cerebrovascular and neuroprotective activity in conditions of brain ischemia. Presumably, the GABA-ergic system of brain vessels is involved in mechanisms of cerebrovascular and neuroprotective activity of 5-hydroxyadamantane-2-on.

摘要

目的

研究5-羟基金刚烷-2-酮对脑缺血状态下大鼠脑血流量及脑组织形态学状态的影响。还研究了该物质与N-甲基-D-天冬氨酸(NMDA)受体的相互作用。

方法

采用激光流量计局部血流记录法、[³H]-MK-801结合法及脑组织形态学检查方法进行研究。我们使用了全脑短暂缺血模型、大脑中动脉闭塞模型及脑超重力缺血模型。

结果

与谷氨酸能受体拮抗剂美金刚不同,5-羟基金刚烷-2-酮不阻断NMDA受体,而是增强脑缺血大鼠的脑血流量。荷包牡丹碱可消除此效应。在大脑中动脉永久闭塞的情况下,5-羟基金刚烷-2-酮使神经细胞、轴突和神经胶质细胞的代偿性再生得以恢复,且微循环血管数量增加。5-羟基金刚烷-2-酮提高了脑超重力缺血动物的存活率。

结论

5-羟基金刚烷-2-酮,一种金刚烷衍生物,不是NMDA受体拮抗剂,在脑缺血状态下表现出显著的脑血管和神经保护活性。推测脑血管的γ-氨基丁酸能系统参与了5-羟基金刚烷-2-酮的脑血管和神经保护活性机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/488a/3977474/594cb2e6372d/BMRI2014-586501.001.jpg

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