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首页> 外文期刊>Journal of Medicinal Chemistry >3-oxoisoindoline-1-carboxamides: Potent, state-dependent blockers of voltage-gated sodium channel na _v1.7 with efficacy in rat pain models
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3-oxoisoindoline-1-carboxamides: Potent, state-dependent blockers of voltage-gated sodium channel na _v1.7 with efficacy in rat pain models

机译:3-oxoisoindoline-1-carboxamides:电压门控钠通道na _v1.7的强效状态依赖性阻滞剂,在大鼠疼痛模型中有效

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摘要

The voltage-gated sodium channel Na _V1.7 is believed to be a critical mediator of pain sensation based on clinical genetic studies and pharmacological results. Clinical utility of nonselective sodium channel blockers is limited due to serious adverse drug effects. Here, we present the optimization, structure-activity relationships, and in vitro and in vivo characterization of a novel series of Na _V1.7 inhibitors based on the oxoisoindoline core. Extensive studies with focus on optimization of Na _V1.7 potency, selectivity over Na _V1.5, and metabolic stability properties produced several interesting oxoisoindoline carboxamides (16A, 26B, 28, 51, 60, and 62) that were further characterized. The oxoisoindoline carboxamides interacted with the local anesthetics binding site. In spite of this, several compounds showed functional selectivity versus Na _V1.5 of more than 100-fold. This appeared to be a combination of subtype and state-dependent selectivity. Compound 28 showed concentration- dependent inhibition of nerve injury-induced ectopic in an ex vivo DRG preparation from SNL rats. Compounds 16A and 26B demonstrated concentration-dependent efficacy in preclinical behavioral pain models. The oxoisoindoline carboxamides series described here may be valuable for further investigations for pain therapeutics.
机译:根据临床遗传研究和药理结果,电压门控钠通道Na _V1.7被认为是疼痛感觉的关键介质。由于严重的不良药物作用,非选择性钠通道阻滞剂的临床应用受到限制。在这里,我们介绍了基于氧代异吲哚啉核心的一系列新型Na_V1.7抑制剂的优化,构效关系以及体外和体内表征。广泛的研究集中在优化Na_V1.7效力,对Na_V1.5的选择性以及代谢稳定性等方面,产生了一些有趣的氧代异吲哚啉羧酰胺(16A,26B,28、51、60和62),这些特征进一步得到了表征。氧代异吲哚啉羧酰胺与局部麻醉剂结合位点相互作用。尽管如此,几种化合物相对于Na_V1.5表现出超过100倍的功能选择性。这似乎是亚型和状态依赖性选择性的组合。在来自SNL大鼠的离体DRG制剂中,化合物28对神经损伤诱导的异位具有浓度依赖性抑制。在临床前行为疼痛模型中,化合物16A和26B表现出浓度依赖性功效。本文所述的氧代异吲哚啉羧酰胺系列对于疼痛治疗的进一步研究可能有价值。

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