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首页> 外文期刊>Journal of Medicinal Chemistry >1-(4-(3-Phenylalkyl)phenyl)-2-aminopropanes as 5-HT(2A) partial agonists.
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1-(4-(3-Phenylalkyl)phenyl)-2-aminopropanes as 5-HT(2A) partial agonists.

机译:1-(4-(3-苯基烷基)苯基)-2-氨基丙烷为5-HT(2A)部分激动剂。

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Phenylalkylamines such as 1-(4-bromo-2, 5-dimethoxyphenyl)-2-aminopropane (DOB; 1a) and its corresponding iodo derivative DOI (2) are commonly used 5-HT(2) serotonin agonists. Previous studies have established that the 2,5-dimethoxy substitution pattern found in these compounds is optimal for high affinity at 5-HT(2A) receptors and that substituents at the 4-position can modulate affinity over a wide range. We have previously shown, however, that when the 4-position is substituted with a 3-phenylpropyl substituent (i.e., 3), the compound binds with an affinity comparable to that of 1a but that it possesses 5-HT(2A) antagonist character. The present study examined the structure-affinity relationships of 3, and the results were very much unexpected. That is, the 2,5-dimethoxy substitution pattern of 3 is not required for high affinity. Either of the two methoxy groups can be removed without untoward effect on affinity, and relocation of the methoxy substituents actually enhances affinity by as much as an order of magnitude. None of the compounds displayed more than 20-fold selectivity for 5-HT(2A) over 5-HT(2C) receptors. In addition, several were demonstrated to act as 5-HT(2A) partial agonists. As such, the results of this study suggest that the structure-affinity relationships of phenylalkylamines as 5-HT(2A) ligands now be reinvestigated in greater detail.
机译:苯烷基胺,例如1-(4-溴-2,5-二甲氧基苯基)-2-氨基丙烷(DOB; 1a)及其相应的碘衍生物DOI(2)是常用的5-HT(2)5-羟色胺激动剂。先前的研究已经确定,在这些化合物中发现的2,5-二甲氧基取代模式对于在5-HT(2A)受体具有高亲和力是最佳的,并且在4-位的取代基可以在很宽的范围内调节亲和力。但是,我们先前已经表明,当4-位被3-苯基丙基取代基(即3)取代时,该化合物以与1a相当的亲和力结合,但具有5-HT(2A)拮抗剂特性。本研究检查了3的结构亲和关系,结果非常出乎意料。即,对于高亲和力不需要3的2,5-二甲氧基取代模式。可以除去两个甲氧基中的任何一个而不会对亲和力产生不利影响,并且甲氧基取代基的重新定位实际上将亲和力提高了一个数量级。没有一种化合物对5-HT(2A)的选择性超过5-HT(2C)受体的选择性超过20倍。此外,已证明有几种充当5-HT(2A)部分激动剂。因此,这项研究的结果表明,苯烷基胺作为5-HT(2A)配体的结构亲和关系现在将进行更详细的研究。

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