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Discovery and development of a potent and highly selective small molecule muscarinic acetylcholine receptor subtype I (mAChR 1 or M1) antagonist in vitro and in vivo probe

机译:在体内和体外探针中发现和开发有效的高选择性小分子毒蕈碱型乙酰胆碱受体亚型(mAChR 1或M1)拮抗剂

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摘要

This article describes the discovery and development of the first highly selective, small molecule antagonist of the muscarinic acetylcholine receptor subtype I (mAChR1 or M1). An M1 functional, cell-based calcium-mobilization assay identified three distinct chemical series with initial selectivity for M1 versus M4. An iterative parallel synthesis approach was employed to optimize all three series in parallel, which led to the development of novel microwave-assisted chemistry and provided important take home lessons for probe development projects. Ultimately, this effort produced VU0255035, a potent (IC50 = 130 nM) and selective (>75-fold vs. M2-M5 and > 10 μM vs. a panel of 75 GPCRs, ion channels and transporters) small molecule M1 antagonist. Further profiling demonstrated that VU0255035 was centrally penetrant (BrainAUC/PlasmaAUC of 0.48) and active in vivo, rendering it acceptable as both an in vitro and in vivo MLSCN/ MLPCN probe molecule for studying and dissecting M1 function.
机译:本文介绍了毒蕈碱型乙酰胆碱受体亚型I(mAChR1或M1)的第一个高选择性小分子拮抗剂的发现和开发。一项基于细胞的M1功能性钙动员测定法确定了三个不同的化学系列,分别具有M1和M4的初始选择性。采用迭代并行合成方法对所有三个系列进行并行优化,这导致了新型微波辅助化学技术的发展,并为探针开发项目提供了重要的实训课程。最终,这种努力产生了VU0255035,一种有效的(IC50 = 130 nM)和选择性的(相对于M2-M5,> 75倍,相对于一组75个GPCR,离子通道和转运蛋白,> 10μM)小分子M1拮抗剂。进一步的分析表明,VU0255035具有中央渗透性(BrainAUC / PlasmaAUC为0.48),并且在体内具有活性,使其成为研究和解剖M1功能的体外和体内MLSCN / MLPCN探针分子均可接受。

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