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喹唑啉类和喹唑啉酮类作为药物化学中普遍存在的结构片段:合成方法及药理多样化发展的最新进展

Quinazolines and quinazolinones as ubiquitous structural fragments in medicinal chemistry: An update on the development of synthetic methods and pharmacological diversification.

作者信息

Khan Imtiaz, Zaib Sumera, Batool Sadaf, Abbas Naeem, Ashraf Zaman, Iqbal Jamshed, Saeed Aamer

机构信息

Department of Chemistry, Quaid-i-Azam University, Islamabad 45320, Pakistan.

Department of Biochemistry, Hazara University, Garden Campus, Mansehra, Pakistan; Centre for Advanced Drug Research, COMSATS Institute of Information Technology, Abbottabad 22060, Pakistan.

出版信息

Bioorg Med Chem. 2016 Jun 1;24(11):2361-2381. doi: 10.1016/j.bmc.2016.03.031. Epub 2016 Mar 18.

Abstract

Nitrogen-rich heterocycles, particularly quinazolines and quinazolinones, represent a unique class of diversified frameworks displaying a broad spectrum of biological functions. Over the past several years, intensive medicinal chemistry efforts have generated numerous structurally functionalized quinazoline and quinazolinone derivatives. Interest in expanding the biological effects, demonstrated by these motifs, is growing exponentially, as indicated by the large number of publications reporting the easy accessibility of these skeletons in addition to the diverse nature of synthetic as well as biological applications. Therefore, the main focus of the present review is to provide an ample but condensed overview on various synthetic approaches providing access to quinazoline and quinazolinone compounds with multifaceted biological activities. Furthermore, mechanistic insights, synthetic utilization, structure-activity relationships and molecular modeling inputs for the potent derivatives have also been discussed.

摘要

富含氮的杂环,特别是喹唑啉和喹唑啉酮,代表了一类独特的具有多样化骨架的化合物,展现出广泛的生物学功能。在过去几年中,大量的药物化学研究工作已产生了众多结构功能化的喹唑啉和喹唑啉酮衍生物。正如大量出版物所表明的,除了合成及生物学应用的多样性之外,这些骨架易于获取,因此,人们对扩展这些基序所展示的生物学效应的兴趣正呈指数级增长。因此,本综述的主要重点是对各种合成方法进行全面而简要的概述,这些方法可用于获得具有多方面生物活性的喹唑啉和喹唑啉酮化合物。此外,还讨论了有效衍生物的作用机制见解、合成应用、构效关系和分子建模输入。

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