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微波诱导合成生物活性氮杂环化合物。

Microwave-Induced Synthesis of Bioactive Nitrogen Heterocycles.

作者信息

Das Aparna, Ray Devalina, Ashraf Muhammad Waqar, Banik Bimal Krishna

机构信息

Department of Mathematics and Natural Sciences, College of Sciences and Human Studies, Prince Mohammad Bin Fahd University, Al Khobar 31952, Kingdom of Saudi Arabia.

Amity Institute of Biotechnology, Amity University, J3 Block AICCRS Sec 125 Noida Uttar Pradesh, 201313, India.

出版信息

Curr Top Med Chem. 2025;25(5):554-580. doi: 10.2174/0115680266315936240807101931.

Abstract

There are many different applications of heterocyclic molecules in pharmaceutical and materials science, which make them an important family of compounds. Among these heterocyclic compounds, nitrogen-containing heterocyclic (N-heterocyclic) compounds have attracted a lot of interest among researchers due to their various applications across a wide variety of fields. Many studies have been performed over the past few years to study the synthesis of N-heterocycles under different reaction conditions, such as solvent-free, catalytic conditions, reactants immobilized on a solid support, one-pot synthesis, and microwave irradiation. Our research group has demonstrated that microwaves can be utilized for rapid and efficient synthesis of biologically active compounds. In this review, we provide an overview of the microwave-assisted non-catalytic and catalytic preparation of nitrogen-containing heterocycles, mostly polycyclic N-heterocycles, five-membered Nheterocycles, six-membered N-heterocycles, and fused N-heterocycles. In this review, we explore the microwave-assisted preparation of biologically important compounds, such as pyrimidines, thiazoles, imines, tetrazoles, steroidal derivatives, quinolines, indolizine, triazoles, beta-lactams, pyrroles, and quinoxalines.

摘要

杂环分子在制药和材料科学中有许多不同的应用,这使其成为一类重要的化合物。在这些杂环化合物中,含氮杂环(N-杂环)化合物因其在广泛领域的各种应用而引起了研究人员的浓厚兴趣。在过去几年中,已经进行了许多研究来探讨在不同反应条件下N-杂环的合成,例如无溶剂、催化条件、固定在固体载体上的反应物、一锅法合成以及微波辐射。我们的研究小组已经证明微波可用于快速高效地合成生物活性化合物。在这篇综述中,我们概述了微波辅助的含氮杂环的非催化和催化制备方法,主要包括多环N-杂环、五元N-杂环、六元N-杂环和稠合N-杂环。在这篇综述中,我们探讨了微波辅助制备具有生物学重要性的化合物,如嘧啶、噻唑、亚胺、四唑、甾体衍生物、喹啉、中氮茚、三唑、β-内酰胺、吡咯和喹喔啉。

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