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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Pharmacologic Characterization of AMG8379, a Potent and Selective Small Molecule Sulfonamide Antagonist of the Voltage-Gated Sodium Channel Na(V)1.7
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Pharmacologic Characterization of AMG8379, a Potent and Selective Small Molecule Sulfonamide Antagonist of the Voltage-Gated Sodium Channel Na(V)1.7

机译:AMG8379的药理学表征,电压门控钠通道Na(V)1.7的有效和选择性的小分子磺酰胺拮抗剂

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Potent and selective antagonists of the voltage-gated sodium channel Na(V)1.7 represent a promising avenue for the development of new chronic pain therapies. We generated a small molecule atropisomer quinolone sulfonamide antagonist AMG8379 and a less active enantiomer AMG8380. Here we show that AMG8379 potently blocks human Na(V)1.7 channels with an IC50 of 8.5 nM and endogenous tetrodotoxin (TTX)sensitive sodium channels in dorsal root ganglion (DRG) neurons with an IC50 of 3.1 nM in whole-cell patch clamp electrophysiology assays using a voltage protocol that interrogates channels in a partially inactivated state. AMG8379 was 100-to 1000-fold selective over other Na-V family members, including Na(V)1.4 expressed in muscle and Na(V)1.5 expressed in the heart, as well as TTX-resistant NaV channels in DRG neurons. Using an ex vivo mouse skin-nerve preparation, AMG8379 blocked mechanically induced action potential firing in C-fibers in both a time-dependent and dose-dependent manner. AMG8379 similarly reduced the frequency of thermally induced C-fiber spiking, whereas AMG8380 affected neither mechanical nor thermal responses. In vivo target engagement of AMG8379 in mice was evaluated in multiple Na(V)1.7-dependent behavioral endpoints. AMG8379 dose-dependently inhibited intradermal histamine-induced scratching and intraplantar capsaicin-induced licking, and reversed UVB radiation skin burn-induced thermal hyperalgesia; notably, behavioral effects were not observed with AMG8380 at similar plasma exposure levels. AMG8379 is a potent and selective Na(V)1.7 inhibitor that blocks sodium current in heterologous cells as well as DRG neurons, inhibits action potential firing in peripheral nerve fibers, and exhibits pharmacodynamic effects in translatable models of both itch and pain.
机译:电压门控钠通道Na(v)1.7的有效和选择性拮抗剂代表了新的慢性疼痛治疗的有希望的途径。我们产生了一只小分子的阿托比托喹啉磺胺拮抗剂AMG8379和较少的活性对映体AMG8380。在这里,我们表明AMG8379易于阻断人NA(v)1.7通道,其具有8.5nm的IC50和内源性肺毒素(TTX)敏感的钠通道(DRG)神经元,IC50在全细胞贴片电生理学中的IC50为3.1nm使用询问部分灭活状态的电压协议的电压协议进行测定。 AMG8379为100到1000倍的选择性超过其它的NaV家族成员,包括的Na(V)1.4表示在肌肉和Na(V)1.5在心脏中表达,以及在DRG神经元TTX-耐受性的NaV通道。使用前体内小鼠皮神经制剂,AMG8379以时间依赖性和剂量依赖性方式在C纤维中堵塞机械诱导的动作射击。 AMG8379类似地降低了热诱导的C-纤维尖峰的频率,而AMG8380既不影响机械也不受到热响应。在多种Na(v)1.7依赖性行为终点中评估小鼠中AMG8379中AMG8379的体内靶向。 AMG8379剂量依赖性抑制皮内组胺诱导的刮擦和血糖癌胶囊诱导的舔,逆转UVB辐射皮肤烧伤诱导的热痛觉型值得注意的是,在类似的血浆暴露水平下,未在AMG8380中观察到行为效应。 AMG8379是有效和选择性的Na(V)1.7抑制剂,其在异源细胞中当前块钠以及DRG神经元,抑制外周神经纤维,并显示出在两个痒和疼痛的平移模型的药效学作用动作电位发放。

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