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用于治疗疼痛的新型瞬时受体电位香草酸亚型1受体拮抗剂:含喹啉、异喹啉、喹唑啉、酞嗪、喹喔啉和噌啉部分的脲的构效关系

Novel transient receptor potential vanilloid 1 receptor antagonists for the treatment of pain: structure-activity relationships for ureas with quinoline, isoquinoline, quinazoline, phthalazine, quinoxaline, and cinnoline moieties.

作者信息

Gomtsyan Arthur, Bayburt Erol K, Schmidt Robert G, Zheng Guo Zhu, Perner Richard J, Didomenico Stanley, Koenig John R, Turner Sean, Jinkerson Tammie, Drizin Irene, Hannick Steven M, Macri Bryan S, McDonald Heath A, Honore Prisca, Wismer Carol T, Marsh Kennan C, Wetter Jill, Stewart Kent D, Oie Tetsuro, Jarvis Michael F, Surowy Carol S, Faltynek Connie R, Lee Chih-Hung

机构信息

Global Pharmaceutical Research and Development, Abbott Laboratories, 100 Abbott Park Road, Abbott Park, Illinois 60064, USA.

出版信息

J Med Chem. 2005 Feb 10;48(3):744-52. doi: 10.1021/jm0492958.

Abstract

Novel transient receptor potential vanilloid 1 (TRPV1) receptor antagonists with various bicyclic heteroaromatic pharmacophores were synthesized, and their in vitro activity in blocking capsaicin activation of TRPV1 was assessed. On the basis of the contribution of these pharmacophores to the in vitro potency, they were ranked in the order of 5-isoquinoline > 8-quinoline = 8-quinazoline > 8-isoquinoline > or = cinnoline approximately phthalazine approximately quinoxaline approximately 5-quinoline. The 5-isoquinoline-containing compound 14a (hTRPV1 IC50 = 4 nM) exhibited 46% oral bioavailability and in vivo activity in animal models of visceral and inflammatory pain. Pharmacokinetic and pharmacological properties of 14a are substantial improvements over the profile of the high-throughput screening hit 1 (hTRPV1 IC50 = 22 nM), which was not efficacious in animal pain models and was not orally bioavailable.

摘要

合成了具有各种双环杂芳基药效基团的新型瞬时受体电位香草酸亚型1(TRPV1)受体拮抗剂,并评估了它们在体外阻断辣椒素激活TRPV1的活性。根据这些药效基团对体外效力的贡献,它们的排名顺序为5-异喹啉>8-喹啉=8-喹唑啉>8-异喹啉>或=噌啉≈酞嗪≈喹喔啉≈5-喹啉。含5-异喹啉的化合物14a(hTRPV1 IC50 = 4 nM)在动物内脏和炎性疼痛模型中表现出46%的口服生物利用度和体内活性。与高通量筛选命中化合物1(hTRPV1 IC50 = 22 nM)相比,14a的药代动力学和药理学性质有了显著改善,化合物1在动物疼痛模型中无效且无口服生物利用度。

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