首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >A screening study of ChirBase molecular database to explore the expanded chiral pool derived from the application of chiral chromatography.
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A screening study of ChirBase molecular database to explore the expanded chiral pool derived from the application of chiral chromatography.

机译:ChirBase分子数据库的筛选研究,以探索从手性色谱法获得的扩展手性库。

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摘要

28,000 chiral compounds separated by chiral chromatography have been selected in ChirBase database. The enantiomers of this library can be considered as potentially being isolable by chromatography at a small-scale level of development. The resulting chiral pool was analysed with the aim to describe compound molecular diversity as well as druglike and lead-like characteristics. In parallel, we have explored the possibility of using this chiral product library as starting materials for the construction of a virtual chiral combinatorial library. The chemical space occupied by the obtained combinatorial collection of new chiral scaffolds revealed that structures of the chromatographic-based chiral library may also be a source of chiral diversity for drug discovery. Another interesting in silico approach consisted to release all the protected or derivatized compounds. This procedure allowed us to enrich and expand the existing library with several thousands of original small chiral amines, acids and alcohols. Finally, sub-similarity searching strategies were found valuable for quickly selecting suitable small chiral precursors that are readily available from chiral chromatography for the small-scale synthesis of some known chiral drugs.
机译:在ChirBase数据库中选择了28,000种通过手性色谱分离的手性化合物。该文库的对映异构体可被认为在小规模开发中可通过色谱分离。分析所得的手性库,旨在描述化合物的分子多样性以及类药物和类似铅的特征。同时,我们探索了将该手性产物库用作构建虚拟手性组合库的起始材料的可能性。获得的新手性支架组合组合所占据的化学空间表明,基于色谱的手性文库的结构也可能是药物发现手性多样性的来源。另一种有趣的计算机方法是释放所有受保护或衍生的化合物。此过程使我们可以使用数千种原始的小手性胺,酸和醇来丰富和扩展现有的库。最后,发现亚相似性搜索策略对于快速选择合适的小型手性前体非常有价值,这些手性可从手性色谱法中获得,用于小规模合成某些已知的手性药物。

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