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首页> 外文期刊>Journal of Medicinal Chemistry >Scaffold Ranking and Positional Scanning Utilized in the Discovery of nAChR-Selective Compounds Suitable for Optimization Studies
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Scaffold Ranking and Positional Scanning Utilized in the Discovery of nAChR-Selective Compounds Suitable for Optimization Studies

机译:支架排序和位置扫描用于发现适合优化研究的nAChR选择性化合物

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摘要

Nicotine binds to nicotinic acetylcholine receptors (nAChR), which can exist as many different subtypes. The α4β2 nAChR is the most prevalent subtype in the brain and possesses the most evidence linking it to nicotine seeking behavior. Herein we report the use of mixture based combinatorial libraries for the rapid discovery of a series of α4β2 nAChR selective compounds. Further chemistry optimization provided compound 301, which was characterized as a selective α4β2 nAChR antagonist. This compound displayed no agonist activity but blocked nicotine-induced depolarization of HEK cells with an IC_(50) of approximately 430 nM. 301 demonstrated nearly 500-fold selectivity for binding and 40-fold functional selectivity for α4β2 over α3β4 nAChR. In total over 5 million compounds were assessed through the use of just 170 samples in order to identify a series of structural analogues suitable for future optimization toward the goal of developing clinically relevant smoking cessation medications.
机译:尼古丁与烟碱乙酰胆碱受体(nAChR)结合,后者可以存在许多不同的亚型。 α4β2nAChR是大脑中最普遍的亚型,并且拥有将其与尼古丁寻求行为相关的最多证据。本文中,我们报告了基于混合物的组合库在快速发现一系列α4β2nAChR选择性化合物中的应用。进一步的化学优化提供了化合物301,其特征为选择性的α4β2nAChR拮抗剂。该化合物未显示激动剂活性,但以约430 nM的IC_(50)阻断了尼古丁诱导的HEK细胞去极化。 301证明了与α3β4nAChR相比,对结合的选择性接近500倍,对α4β2的选择性达到40倍。通过仅使用170个样品,总共评估了超过500万种化合物,以鉴定出一系列适合未来优化的结构类似物,以期开发出与临床相关的戒烟药物。

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