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首页> 外文期刊>Journal of Medicinal Chemistry >Computational Exploration of Molecular Scaffolds in Medicinal Chemistry
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Computational Exploration of Molecular Scaffolds in Medicinal Chemistry

机译:药物化学中分子支架的计算探索

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The scaffold concept is widely applied in medicinal chemistry. Scaffolds are mostly used to represent core structures of bioactive compounds. Although the scaffold concept has limitations and is often viewed differently from a chemical and computational perspective, it has provided a basis for systematic investigations of molecular cores and building blocks, going far beyond the consideration of individual compound series. Over the past 2 decades, alternative scaffold definitions and organization schemes have been introduced and scaffolds have been studied in a variety of ways and increasingly on a large scale. Major applications of the scaffold concept include the generation of molecular hierarchies, structural classification, association of scaffolds with biological activities, and activity prediction. This contribution discusses computational approaches for scaffold generation and analysis, with emphasis on recent developments impacting medicinal chemistry. A variety of scaffold-based studies are discussed, and a perspective on scaffold methods is provided.
机译:支架概念被广泛应用于药物化学中。支架主要用于代表生物活性化合物的核心结构。尽管支架的概念有局限性,并且经常从化学和计算的角度来看是不同的,但它为分子核和构件的系统研究提供了基础,远远超出了单个化合物系列的考虑范围。在过去的二十年中,已经引入了替代的支架定义和组织方案,并且已经以各种方式并且越来越大规模地研究了支架。支架概念的主要应用包括分子层次的生成,结构分类,支架与生物活性的关联以及活性预测。该文稿讨论了支架生成和分析的计算方法,重点是影响药物化学的最新进展。讨论了各种基于支架的研究,并提供了有关支架方法的观点。

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