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Organic Synthesis Toward Small-Molecule Probes and Drugs Special Feature: Route to three-dimensional fragments using diversity-oriented synthesis

机译:面向小分子探针和药物的有机合成特殊功能:使用面向多样性的合成方法合成三维片段

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摘要

Fragment-based drug discovery (FBDD) has proven to be an effective means of producing high-quality chemical ligands as starting points for drug-discovery pursuits. The increasing number of clinical candidate drugs developed using FBDD approaches is a testament of the efficacy of this approach. The success of fragment-based methods is highly dependent on the identity of the fragment library used for screening. The vast majority of FBDD has centered on the use of sp2-rich aromatic compounds. An expanded set of fragments that possess more 3D character would provide access to a larger chemical space of fragments than those currently used. Diversity-oriented synthesis (DOS) aims to efficiently generate a set of molecules diverse in skeletal and stereochemical properties. Molecules derived from DOS have also displayed significant success in the modulation of function of various “difficult” targets. Herein, we describe the application of DOS toward the construction of a unique set of fragments containing highly sp3-rich skeletons for fragment-based screening. Using cheminformatic analysis, we quantified the shapes and physical properties of the new 3D fragments and compared them with a database containing known fragment-like molecules.
机译:事实证明,基于片段的药物发现(FBDD)是生产高质量化学配体的有效手段,是进行药物发现的起点。使用FBDD方法开发的临床候选药物的数量不断增加,证明了该方法的有效性。基于片段的方法的成功高度依赖于用于筛选的片段库的身份。 FBDD的绝大多数集中在使用富含sp 2 的芳族化合物上。具有更多3D角色的扩展片段集可以提供比当前使用的更大的片段化学空间。面向多样性的合成(DOS)旨在有效地生成一组骨架和立体化学性质各不相同的分子。 DOS衍生的分子在调节各种“难”靶标的功能方面也显示出巨大的成功。在本文中,我们描述了DOS在构建包含高度sp 3 骨架的独特片段组中的应用,以用于基于片段的筛选。使用化学信息学分析,我们量化了新3D片段的形状和物理性质,并将其与包含已知片段样分子的数据库进行了比较。

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