化学空间
药物发现
虚拟筛选
计算机科学
吞吐量
高通量筛选
鉴定(生物学)
化学信息学
筛选技术
纳米技术
手性(物理)
组合化学
计算生物学
药品
药物开发
对映体
化学
数据科学
医学
小分子
生物信息学
生物
材料科学
电信
植物
无线
作者
Ilaria Proietti Silvestri,Paul Colbon
标识
DOI:10.1021/acsmedchemlett.1c00251
摘要
Modern-day drug discovery is now blessed with a wide range of high-throughput hit identification (hit-ID) strategies that have been successfully validated in recent years, with particular success coming from high-throughput screening, fragment-based lead discovery, and DNA-encoded library screening. As screening efficiency and throughput increases, this enables the viable exploration of increasingly complex three-dimensional (3D) chemical structure space, with a realistic chance of identifying highly specific hit ligands with increased target specificity and reduced attrition rates in preclinical and clinical development. This minireview will explore the impact of an improved design of multifunctionalized, sp3-rich, stereodefined scaffolds on the (virtual) exploration of 3D chemical space and the specific requirements for different hit-ID technologies.
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