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基于2-芳基恶唑啉的C-H活化引发的级联反应合成CF-异喹啉酮和咪唑稠合的CF-异喹啉酮

Synthesis of CF-Isoquinolinones and Imidazole-Fused CF-Isoquinolinones Based on C-H Activation-Initiated Cascade Reactions of 2-Aryloxazolines.

作者信息

Liang Miaomiao, Yan Shengnan, Xu Yuanshuang, Ma Chunhua, Zhang Xinying, Fan Xuesen

机构信息

Pingyuan Laboratory, Collaborative Innovation Center of Henan Province for Green Manufacturing of Fine Chemicals, Key Laboratory of Green Chemical Media and Reactions, Ministry of Education, School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang 453007, China.

出版信息

J Org Chem. 2024 Jul 19;89(14):10180-10196. doi: 10.1021/acs.joc.4c01082. Epub 2024 Jul 4.

Abstract

Presented herein are novel syntheses of CF-isoquinolinones and imidazole fused CF-isoquinolinones based on the cascade reactions of 2-aryloxazolines with trifluoromethyl imidoyl sulfoxonium ylides. The formation of CF-isoquinolinone involves an intriguing cascade process including oxazolinyl group-assisted aryl alkylation through C(sp)-H bond metalation, carbene formation, migratory insertion, and proto-demetalation followed by intramolecular condensation and water-promoted oxazolinyl ring-scission. With this method, the isoquinolinone scaffold tethered with valuable functional groups was effectively constructed. By taking advantage of the functional groups embedded therein, the products thus obtained could be readily transformed into imidazole-fused CF-isoquinolinones or coupled with some clinical drugs to furnish hybrid compounds with potential applications in drug development. In general, the developed protocols feature expeditious and convenient formation of valuable CF-heterocyclic skeletons, broad substrate scope, and ready scalability. In addition, studies on the activity of selected products against some human cancer cell lines demonstrated their potential as lead compounds for the development of novel anticancer drugs.

摘要

本文介绍了基于2-芳基恶唑啉与三氟甲基亚胺基硫鎓叶立德的串联反应,新型合成CF-异喹啉酮和咪唑稠合CF-异喹啉酮的方法。CF-异喹啉酮的形成涉及一个有趣的串联过程,包括恶唑啉基通过C(sp)-H键金属化辅助芳基烷基化、卡宾形成、迁移插入和质子脱金属化,随后进行分子内缩合和水促进的恶唑啉环开环。通过这种方法,有效地构建了带有有价值官能团的异喹啉酮骨架。利用其中嵌入的官能团,由此获得的产物可以很容易地转化为咪唑稠合的CF-异喹啉酮,或与一些临床药物偶联,以提供在药物开发中具有潜在应用的杂化化合物。一般来说,所开发的方法具有快速方便地形成有价值的CF-杂环骨架、广泛的底物范围和易于放大的特点。此外,对所选产物对一些人类癌细胞系活性的研究表明,它们有潜力作为开发新型抗癌药物的先导化合物。

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