Nielsen Thomas E, Meldal Morten
Carlsberg Laboratory, Gamle Carlsbergvej 10, DK-2500 Valby, Denmark.
Curr Opin Drug Discov Devel. 2009 Nov;12(6):798-810.
Efficient routes for the creation of heterocycles continue to be one of the primary goals for solid-phase synthesis. Recent advances in this field rely most notably on transition-metal-catalysis and N-acyliminium chemistry to mediate a range of cyclization processes for the generation of compounds with significant structural complexity and diversity. This review describes some of the most systematic solid-phase approaches that are potentially suited for pharmaceutical applications, that is, the methods described are useful for the synthesis of compound collections, and exhibit tunable stereochemistry, scaffold structure, and appendage modification.
构建杂环的高效途径仍然是固相合成的主要目标之一。该领域的最新进展最显著地依赖于过渡金属催化和N-酰基亚胺离子化学,以介导一系列环化过程,从而生成具有显著结构复杂性和多样性的化合物。本综述描述了一些可能适用于药物应用的最系统的固相方法,即所描述的方法对于化合物库的合成是有用的,并且具有可调节的立体化学、支架结构和附属修饰。