Aryl Biphenyl-3-ylmethylpiperazines as 5-HT7 Receptor Antagonists

Authors
Kim, JeeyeonKim, YoungjaeTae, JinsungYeom, MiyoungMoon, BongjinHuang, Xi-PingRoth, Bryan L.Lee, KanghoRhim, HyewhonChoo, Il HanChong, YouhoonKeum, GyochangNam, GhilsooChoo, Hyunah
Issue Date
2013-11
Publisher
WILEY-V C H VERLAG GMBH
Citation
CHEMMEDCHEM, v.8, no.11, pp.1855 - 1864
Abstract
The 5-HT7 receptor (5-HT7R) is a promising therapeutic target for the treatment of depression and neuropathic pain. The 5-HT7R antagonist SB-269970 exhibited antidepressant-like activity, whereas systemic administration of the 5-HT7R agonist AS-19 significantly inhibited mechanical hypersensitivity and thermal hyperalgesia. In our efforts to discover selective 5-HT7R antagonists or agonists, aryl biphenyl-3-ylmethylpiperazines were designed, synthesized, and biologically evaluated against the 5-HT7R. Among the synthesized compounds, 1-([2-methoxy-(1,1-biphenyl)-3-yl]methyl)-4-(2-methoxyphenyl)piperazine (28) was the best binder to the 5-HT7R (pK(i)=7.83), and its antagonistic property was confirmed by functional assays. The selectivity profile of compound 28 was also recorded for the 5-HT7R over other serotonin receptor subtypes, such as 5-HT1R, 5-HT2R, 5-HT3R, and 5-HT6R. In a molecular modeling study, the 2-methoxyphenyl moiety attached to the piperazine ring of compound 28 was proposed to be essential for the antagonistic function.
Keywords
SEROTONIN RECEPTOR; PHARMACOLOGICAL BLOCKADE; MOLECULAR-CLONING; HIGH-AFFINITY; SPINAL 5-HT7; LIGANDS; ACTIVATION; DERIVATIVES; SELECTIVITY; INHIBITION; SEROTONIN RECEPTOR; PHARMACOLOGICAL BLOCKADE; MOLECULAR-CLONING; HIGH-AFFINITY; SPINAL 5-HT7; LIGANDS; ACTIVATION; DERIVATIVES; SELECTIVITY; INHIBITION; antagonists; biaryls; aryl piperazines; receptors; structure-activity relationships
ISSN
1860-7179
URI
https://pubs.kist.re.kr/handle/201004/127483
DOI
10.1002/cmdc.201300240
Appears in Collections:
KIST Article > 2013
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