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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Properties of ibogaine and its principal metabolite (12-hydroxyibogamine) at the MK-801 binding site of the NMDA receptor complex.
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Properties of ibogaine and its principal metabolite (12-hydroxyibogamine) at the MK-801 binding site of the NMDA receptor complex.

机译:在NMDA受体复合物的MK-801结合位点,伊博加因及其主要代谢物(12-羟基异烟酰胺)的性质。

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摘要

The putative anti-addiction alkaloid ibogaine and its principal metabolite 12-hydroxyibogamine appear to act at the (+)-5 methyl-10,11,dihydro-5H- dibenzo[a,d]cycloheten-5-10-imine maleate (MK-801) binding site in the N-methyl-D-aspartate (NMDA)-receptor cation channel. This conclusion is based on findings that both compounds competitively displaced specific [3H]MK-801 binding to membranes from postmortem human caudate and cerebellum and from frog spinal cord. Ibogaine was 4-6-fold more potent than its metabolite and both compounds were less potent (50-1000-fold) than MK-801 binding to the NMDA receptor. In addition, ibogaine (100 microM) and 12-hydroxyibogamine (1 mM) blocked (85-90% of control) the ability of NMDA (100 microM, 5 s) to depolarize frog motoneurons in the isolated frog spinal cord. The prevention of NMDA-depolarizations in frog motoneurons showed use-dependency and was very similar to the block produced by MK-801. In view of the abilities of MK-801 to affect the responses to addictive substances in pre-clinical investigations, our results are compatible with the idea that the ability of ibogaine and 12-hydroxyibogamine to interrupt drug-seeking behavior may, in part, result from their actions at the MK-801 binding site.
机译:推定的抗成瘾生物碱伊博加因及其主要代谢物12-羟基ibogamine似乎作用于(+)-5甲基-10,11,dihydro-5H- dibenzo [a,d] cycloheten-5-10-imine马来酸酯(MK -801)N-甲基-D-天冬氨酸(NMDA)-受体阳离子通道中的结合位点。该结论基于以下发现:两种化合物竞争性地置换了死后人尾状和小脑以及青蛙脊髓中与膜[3H] MK-801的结合。伊博加因的效力比其代谢产物高4-6倍,并且两种化合物的效力均比MK-801与NMDA受体的结合弱(50-1000倍)。此外,依博加因(100 microM)和12-羟基ibogamine(1 mM)阻断(对照组的85-90%)NMDA(100 microM,5 s)使分离的青蛙脊髓中的青蛙运动神经元去极化的能力。青蛙运动神经元中NMDA去极化的预防显示出使用依赖性,并且与MK-801产生的阻滞非常相似。考虑到MK-801在临床前研究中会影响对成瘾性物质的反应的能力,我们的结果与以下观点相吻合:依博加宁和12-羟基异烟酰胺有可能中断药物寻求行为从他们在MK-801绑定位点上的行为。

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