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级联合成策略开辟了通往药用相关脂肪族 3 元和 4 元 N-杂环骨架的途径。

Cascade synthetic strategies opening access to medicinal-relevant aliphatic 3- and 4-membered N-heterocyclic scaffolds.

机构信息

Faculty of Chemistry, Adam Mickiewicz University, Uniwersytetu Poznańskiego 8, 61-614, Poznan, Poland.

Faculty of Chemistry, Adam Mickiewicz University, Uniwersytetu Poznańskiego 8, 61-614, Poznan, Poland.

出版信息

Eur J Med Chem. 2022 Aug 5;238:114438. doi: 10.1016/j.ejmech.2022.114438. Epub 2022 May 6.

Abstract

Cascade reactions are often 'employed' by nature to construct structurally diverse nitrogen-containing heterocycles in a highly stereoselective fashion, i.e., secondary metabolites important for pharmacy. Nitrogen-containing heterocycles of three- and four-membered rings, as standalone and bicyclic compounds, inhibit different enzymes and are pharmacophores of approved drugs or drug candidates considered in many therapies, e.g. anticancer, antibacterial or antiviral. Domino transformations are in most cases in line with modern green chemistry concepts due to atom economy, one-pot procedures often without use the protective groups, time-saving and at markedly lower costs than multistep transformations. The tandem approaches can help to obtain novel N-heterocyclic scaffolds, functionalized according to structural requirements of the target in cells, taking into account the nature of functional group and stereochemistry. On the other hand cascade strategies allow to modify small N-heterocyclic rings in a systematic way, which is beneficial for structure-activity relationship (SAR) analyses. This review is focused on the biological relevance of the N-heterocyclic scaffolds with smaller 3- and 4-membered rings among approved drugs and leading structures of drug candidates. The cascade synthetic strategies offering N-heterocyclic scaffolds, at relatively good yields and high stereoselectivity, are discussed here. The review covers mainly years from 2015 to 2021.

摘要

级联反应通常被自然界用于以高度立体选择性的方式构建结构多样的含氮杂环,即对药学很重要的次级代谢产物。三、四元含氮杂环作为单环和双环化合物,抑制不同的酶,是许多疗法中批准的药物或候选药物的药效团,例如抗癌、抗菌或抗病毒药物。由于原子经济性、一锅法通常无需使用保护基团、节省时间以及成本明显低于多步转化,因此,多米诺转化在大多数情况下符合现代绿色化学概念。串联方法有助于获得根据细胞中靶标结构要求进行功能化的新型 N-杂环支架,同时考虑到官能团和立体化学的性质。另一方面,级联策略允许以系统的方式修饰小的 N-杂环,这有利于进行构效关系 (SAR) 分析。本文综述了在批准的药物和候选药物的主要结构中,具有较小 3 元和 4 元环的 N-杂环支架的生物学相关性。本文讨论了提供 N-杂环支架的级联合成策略,这些策略具有相对较好的收率和高立体选择性。该综述主要涵盖了 2015 年至 2021 年的研究。

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