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构象限制的酰基磺酰胺等排体的设计:鉴定 N-([1,2,4]三唑并[4,3-a]吡啶-3-基)甲磺酰胺类化合物作为治疗疼痛的强效和选择性 hNa1.7 抑制剂。

Design of Conformationally Constrained Acyl Sulfonamide Isosteres: Identification of N-([1,2,4]Triazolo[4,3- a]pyridin-3-yl)methane-sulfonamides as Potent and Selective hNa1.7 Inhibitors for the Treatment of Pain.

机构信息

Xenon Pharmaceuticals, Inc. , 200-3650 Gilmore Way , Burnaby , BC V5G 4W8 , Canada.

Genentech, Inc. , 1 DNA Way , South San Francisco , California 94080 , United States.

出版信息

J Med Chem. 2018 Jun 14;61(11):4810-4831. doi: 10.1021/acs.jmedchem.7b01826. Epub 2018 May 23.

Abstract

The sodium channel Na1.7 has emerged as a promising target for the treatment of pain based on strong genetic validation of its role in nociception. In recent years, a number of aryl and acyl sulfonamides have been reported as potent inhibitors of Na1.7, with high selectivity over the cardiac isoform Na1.5. Herein, we report on the discovery of a novel series of N-([1,2,4]triazolo[4,3- a]pyridin-3-yl)methanesulfonamides as selective Na1.7 inhibitors. Starting with the crystal structure of an acyl sulfonamide, we rationalized that cyclization to form a fused heterocycle would improve physicochemical properties, in particular lipophilicity. Our design strategy focused on optimization of potency for block of Na1.7 and human metabolic stability. Lead compounds 10, 13 (GNE-131), and 25 showed excellent potency, good in vitro metabolic stability, and low in vivo clearance in mouse, rat, and dog. Compound 13 also displayed excellent efficacy in a transgenic mouse model of induced pain.

摘要

钠离子通道 Na1.7 已成为治疗疼痛的有前途的靶点,这是基于其在伤害感受中的作用的强有力的遗传验证。近年来,已有许多芳基和酰基磺酰胺类化合物被报道为 Na1.7 的有效抑制剂,对心脏同工型 Na1.5 具有很高的选择性。在此,我们报告了一类新型 N-([1,2,4]三唑并[4,3-a]吡啶-3-基)甲磺酰胺类化合物作为选择性 Na1.7 抑制剂的发现。从酰基磺酰胺的晶体结构出发,我们推断环化形成稠合杂环将改善物理化学性质,特别是亲脂性。我们的设计策略侧重于优化 Na1.7 阻断和人代谢稳定性的效力。先导化合物 10、13(GNE-131)和 25 表现出优异的效力、良好的体外代谢稳定性和在小鼠、大鼠和狗体内的低清除率。化合物 13 还在诱导性疼痛的转基因小鼠模型中表现出优异的疗效。

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