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首页> 外文期刊>Bioorganic and Medicinal Chemistry Letters >Identification of an imidazopyridine scaffold to generate potent and selective TYK2 inhibitors that demonstrate activity in an in vivo psoriasis model
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Identification of an imidazopyridine scaffold to generate potent and selective TYK2 inhibitors that demonstrate activity in an in vivo psoriasis model

机译:鉴定咪唑吡啶支架,产生有效和选择性Tyk2抑制剂,其在体内牛皮癣模型中表现出活性

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Graphical abstract Display Omitted Abstract Herein we report identification of an imidazopyridine class of potent and selective TYK2 inhibitors, exemplified by prototype 6 , through constraint of the rotatable amide bond connecting the pyridine and aryl rings of compound 1 . Further optimization led to generation of compound 30 that potently inhibits the TYK2 enzyme and the IL-23 pathway in cells, exhibits selectivity against cellular JAK2 activity, and has good pharmacokinetic properties. In mice, compound 30 demonstrated dose-dependent reduction of IL-17 production in a PK/PD model as well as in an imiquimod-induced psoriasis model. In this efficacy model, the IL-17 decrease was accompanied by a reduction of ear thickness indicating the potential of TYK2 inhibition as a therapeutic approach for psoriasis patients.
机译:图形摘要显示概述摘要在本文中,我们报告了鉴定咪唑吡啶类有效和选择性Tyk2抑制剂的鉴定,通过原型6所例子,通过连接吡啶和化合物1的芳基环的可旋转酰胺键的约束。 进一步的优化导致生成化合物30的产生,使得细胞中的Tyk2酶和IL-23途径效果,表现出对细胞JAK2活性的选择性,并且具有良好的药代动力学性质。 在小鼠中,化合物30在PK / Pd模型中表明IL-17生产的剂量依赖性还原,以及氨基倍诱导的牛皮癣模型。 在该功效模型中,IL-17减少伴随着耳朵厚度的减少,表明Tyk2抑制的潜力作为牛皮癣患者的治疗方法。

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