Abstract

AbstractModeling studies demonstrate that aryl piperazines (I), aryloxyalkylamines (II), phenylalkykamines (III) and indolylalkylamines (VI) may interact at 5-HT receptors in a similar manner. Examination of these structures (I–VI) reveals that all possess an aromatic moiety and terminal amine binding sites (Glennon et al., J Med Chem 32(8):1921–1926, 1989). In the present investigation a new series of aryloxyalkylamines (4, 5, 8, and 9) was designed and synthesized, in which the aromatic moiety is a phenyl group substituted at the 2,3-, 2,4-, 2,5-, or 2,6-positions by halogens and the terminal amine is N-methylpiperazine, or morpholine. In addition, the alkyl side chain is ethyl, or substituted ethyl at the α- or β-carbon by a methyl group. The length of the alkyl chain that separates the terminal amine from the ether oxygen atom of the aryloxy group is of major importance, and two-carbon chain appears optimal. The structures of the new compounds were assessed by microanalyses, IR, and NMR. The analgesic activity of selected compounds was performed on experimental animals and proved to be in the range of 85–100% relative to aspirin.Graphical Abstract[IMAGE]

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