首页> 外文期刊>Journal of Medicinal Chemistry >Design, synthesis, and pharmacological characterization of N - And O-substituted 5,6,7,8-tetrahydro-4H-isoxazolo[4,5-d]azepin-3-ol analogues: Novel 5-HT_(2A)/5-HT_(2C) receptor agonists with pro-cognitive properties
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Design, synthesis, and pharmacological characterization of N - And O-substituted 5,6,7,8-tetrahydro-4H-isoxazolo[4,5-d]azepin-3-ol analogues: Novel 5-HT_(2A)/5-HT_(2C) receptor agonists with pro-cognitive properties

机译:N-和O-取代的5,6,7,8-四氢-4H-异恶唑并[4,5-d] azepin-3-ol类似物的设计,合成和药理学表征:新型5-HT_(2A)/ 5 -HT_(2C)受体激动剂,具有促认知特性

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摘要

The isoxazol-3-one tautomer of the bicyclic isoxazole, 5,6,7,8-tetrahydro- 4H-isoxazolo[4,5-d]azepin-3-ol (THAZ), has previously been shown to be a weak GABA_A and glycine receptor antagonist. In the present study, the potential in this scaffold has been explored through the synthesis and pharmacological characterization of a series of N- and O-substituted THAZ analogues. The analogues N-Bn-THAZ (3d) and O-Bn-THAZ (4d) were found to be potent agonists of the human 5-HT_(2A) and 5-HT_(2C) receptors. Judging from an elaborate pharmacological profiling at numerous other CNS targets, the 3d analogue appears to be selective for the two receptors. Administration of 3d substantially improved the cognitive performance of mice in a place recognition Y-maze model, an effect fully reversible by coadministration of the selective 5-HT_(2C) antagonist SB242084. In conclusion, as novel bioavailable cognitive enhancers that most likely mediate their effects through 5-HT_(2A) and/or 5-HT_(2C) receptors, the isoxazoles 3d and 4d constitute interesting leads for further medicinal chemistry development.
机译:双环异恶唑的异恶唑-3-一个互变异构体5,6,7,8-四氢-4H-异恶唑并[4,5-d] azepin-3-ol(THAZ)先前已显示为弱GABA_A和甘氨酸受体拮抗剂。在本研究中,已通过一系列N和O取代的THAZ类似物的合成和药理学表征探索了该支架的潜力。发现类似物N-Bn-THAZ(3d)和O-Bn-THAZ(4d)是人5-HT_(2A)和5-HT_(2C)受体的有效激动剂。从对许多其他中枢神经系统靶点进行的详尽药理分析来看,该3d类似物似乎对这两种受体具有选择性。在位置识别Y迷宫模型中3d的施用大大改善了小鼠的认知能力,通过共同施用选择性5-HT_(2C)拮抗剂SB242084,这种作用完全可逆。总之,作为新的生物利用的认知增强剂,最有可能通过5-HT_(2A)和/或5-HT_(2C)受体介导其作用,异恶唑3d和4d构成了进一步药物化学发展的有趣线索。

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