Efange S M, Mash D C, Khare A B, Ouyang Q
Departments of Radiology, Medicinal Chemistry, and Neurosurgery, Graduate Program in Neuroscience, University of Minnesota, Minneapolis, Minnesota 55455, USA.
J Med Chem. 1998 Nov 5;41(23):4486-91. doi: 10.1021/jm980156y.
Five phenyl-substituted derivatives and analogues of 1,2,3,4,5, 6-hexahydroazepino[4,5-b]indole, 5, a major fragment of ibogaine (1), were synthesized and tested for binding to monoamine transporters, the NMDA receptor-coupled cation channel, and dopamine and opioid receptors. All five derivatives, 9 and 17a-d, displayed 8-10-fold higher affinity at the DA transporter than ibogaine and noribogaine (4). At the serotonin transporter, two compounds (9 and 17a) exhibited higher potency than ibogaine, while the rest had weaker binding affinities than the lead compound. In keeping with their structural similarity to ibogaine, all five compounds displayed weak to poor affinity for dopamine D1 and D2 receptors. However, two compounds, 17a,c, demonstrated moderate binding affinities at dopamine D3 receptors. All five compounds displayed weak to poor affinities for mu and kappa opioid receptors and for the NMDA receptor-coupled cation channel. Despite the qualitative differences, derivatives and analogues of 5may serve as useful substitutes for ibogaine.
合成了1,2,3,4,5,6 - 六氢氮杂环庚并[4,5 - b]吲哚(1的主要片段5)的五种苯基取代衍生物和类似物,并测试了它们与单胺转运体、NMDA受体偶联阳离子通道以及多巴胺和阿片受体的结合情况。所有五种衍生物9和17a - d在多巴胺转运体上的亲和力比伊博格碱和去甲伊博格碱(4)高8 - 10倍。在5 - 羟色胺转运体上,两种化合物(9和17a)表现出比伊博格碱更高的效力,而其余化合物与先导化合物相比具有较弱的结合亲和力。与它们与伊博格碱的结构相似性一致,所有五种化合物对多巴胺D1和D2受体的亲和力都较弱至较差。然而,两种化合物17a、c在多巴胺D3受体上表现出中等结合亲和力。所有五种化合物对μ和κ阿片受体以及NMDA受体偶联阳离子通道的亲和力都较弱至较差。尽管存在定性差异,但5的衍生物和类似物可能是伊博格碱的有用替代品。