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Organic Synthesis Toward Small-Molecule Probes and Drugs Special Feature: Fragment-based domain shuffling approach for the synthesis of pyran-based macrocycles

机译:面向小分子探针和药物的有机合成特殊功能:用于合成吡喃基大环化合物的基于片段的域改组方法

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摘要

Complexity and the presence of stereogenic centers have been correlated with success as compounds transition from discovery through the clinic. Here we describe the synthesis of a library of pyran-containing macrocycles with a high degree of structural complexity and up to five stereogenic centers. A key feature of the design strategy was to use a modular synthetic route with three fragments that can be readily interchanged or “shuffled” to produce subtly different variants with distinct molecular shapes. A total of 352 macrocycles were synthesized ranging in size from 14- to 16-membered rings. In order to facilitate the generation of stereostructure-activity relationships, the complete matrix of stereoisomers was prepared for each macrocycle. Solid-phase assisted parallel solution-phase techniques were employed to allow for rapid analogue generation. An intramolecular nitrile-activated nucleophilic aromatic substitution reaction was used for the key macrocyclization step.
机译:随着化合物从发现到临床的过渡,复杂性和立体生成中心的存在与成功相关。在这里,我们描述了具有高结构复杂度和多达五个立体异构中心的含吡喃大环化合物库的合成。设计策略的关键特征是使用具有三个片段的模块化合成途径,这些片段可以容易地互换或“改组”以产生具有不同分子形状的微妙变异。总共合成了352个大环,大小从14元到16元环不等。为了促进立体结构-活性关系的产生,为每个大环准备了完整的立体异构体矩阵。采用固相辅助平行溶液相技术可以快速生成模拟物。分子内腈活化的亲核芳族取代反应用于关键的大环化步骤。

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