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通过串联环异构化/羟基烷基化反应,由-炔丙基酰胺与三氟丙酮酸酯合成含CF-取代醇单元的恶唑类化合物。

Synthesis of Oxazoles Containing CF-Substituted Alcohol Unit via Tandem Cycloisomerization/Hydroxyalkylation from -Propargylamides with Trifluoropyruvates.

作者信息

Gao Juan-Juan, Wu Long-Hui, Yu Shu-Qin, Zhu Xue, Zeng Yu, Yang Kai, Wang Zhao-Yang

机构信息

Jiangxi Province Key Laboratory of Pharmacology of Traditional Chinese Medicine, College of Pharmacy, Gannan Medical University, Ganzhou 341000, China.

School of Chemistry, South China Normal University, Guangzhou Key Laboratory of Analytical Chemistry for Biomedicine, GDMPA Key Laboratory for Process Control and Quality Evaluation of Chiral Pharmaceuticals, Key Laboratory of Theoretical Chemistry of Environment, Ministry of Education, Guangzhou 510006, China.

出版信息

Molecules. 2024 Dec 11;29(24):5848. doi: 10.3390/molecules29245848.

Abstract

Oxazoles are important five-membered heterocycles that contain both nitrogen and oxygen atoms. Due to their wide range of biological activities, many oxazoles demonstrate potential for extensive application in various fields, including medicinal chemistry. Trifluoromethyl carbinol, an important pharmacophore, contains both trifluoromethyl and hydroxyl groups and is common in molecules with important biological activities. Constructing oxazoles that contain a trifluoromethyl carbinol unit is undoubtedly important and valuable for expanding the chemical space in drug discovery. In this study, a simple and efficient method was developed for the synthesis of oxazoles containing a CF-substituted alcohol unit via the tandem cycloisomerization/hydroxyalkylation of -propargylamides with trifluoropyruvates through a rational Lewis acid catalytic mechanism. This Zn(OTf)-catalyzed synthetic protocol is operationally simple and provides a series of oxazoles in moderate to good yields. The protocol demonstrates broad substrate scope, high functional group tolerance, and high atom economy and can achieve gram-level reactions, indicating the strong possibility of its practical application.

摘要

恶唑是重要的五元杂环,含有氮和氧原子。由于其广泛的生物活性,许多恶唑在包括药物化学在内的各个领域都显示出广泛应用的潜力。三氟甲基甲醇是一种重要的药效基团,同时含有三氟甲基和羟基,常见于具有重要生物活性的分子中。构建含有三氟甲基甲醇单元的恶唑对于在药物发现中扩展化学空间无疑是重要且有价值的。在本研究中,通过合理的路易斯酸催化机理,开发了一种简单有效的方法,通过α-炔丙基酰胺与三氟丙酮酸的串联环异构化/羟基烷基化反应来合成含有CF-取代醇单元的恶唑。这种由Zn(OTf)催化的合成方法操作简单,能以中等至良好的产率提供一系列恶唑。该方法具有广泛的底物范围、高官能团耐受性和高原子经济性,并且可以实现克级反应,表明其具有很强的实际应用可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58d2/11728596/79a19a7fdc80/molecules-29-05848-g001.jpg

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