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微波辅助合成生物相关苯并唑类化合物

Microwave Assisted Synthesis of Biorelevant Benzazoles.

作者信息

Seth Kapileswar, Purohit Priyank, Chakraborti Asit K

机构信息

Department of Medicinal Chemistry, National Institute of Pharmaceutical Education and Research (NIPER), Sector 67, S. A. S. Nagar 160 062, Punjab, India.

出版信息

Curr Med Chem. 2017;24(41):4638-4676. doi: 10.2174/0929867323666161025142005.

Abstract

The benzazole scaffolds are present in various therapeutic agents and have been recognized as the essential pharmacophore for diverse biological activities. These have generated interest and necessity to develop efficient synthetic methods of these privileged classes of compounds to generate new therapeutic leads for various diseases. The biological activities of the benzazoles and efforts towards their synthesis have been summarized in a few review articles. In view of these, the aim of this review is to provide an account of the developments that have taken place in the synthesis of biorelevant benzazoles under microwave irradiation as the application of microwave heating has long been recognized as a green chemistry tool for speedy generation of synthetic targets. Attention has been focused to those literature reports wherein the use of microwave irradiation is the key step in the formation of the heterocyclic ring system or in functionalization of the benzazole ring system to generate the essential pharmacophoric feature. The convenient and economic way to synthesize these privileged class of heterocycles through the use of microwave irradiation that would be beneficial for the drug discovery scientist to synthesize biologically active benzazoles and provide access to wide range of reactions for the synthesis of benzazoles constitute the theme of this review. Examples have been drawn wherein the use of microwave heating offers distinct advantage in terms of improved product yields and reduction of reaction time as compared to those observed for the synthesis under conventional heating.

摘要

苯并唑骨架存在于多种治疗剂中,并已被公认为具有多种生物活性的必需药效基团。这些引发了人们对开发这些特殊类化合物的高效合成方法以产生针对各种疾病的新治疗先导物的兴趣和必要性。苯并唑的生物活性及其合成方面的努力已在一些综述文章中进行了总结。有鉴于此,本综述的目的是介绍在微波辐射下生物相关苯并唑合成方面所取得的进展,因为微波加热的应用长期以来一直被视为一种用于快速生成合成目标的绿色化学工具。注意力集中在那些文献报道上,其中微波辐射的使用是杂环系统形成或苯并唑环系统官能化以产生必需药效特征的关键步骤。通过使用微波辐射来合成这些特殊类别的杂环的便捷且经济的方法,这将有利于药物发现科学家合成具有生物活性的苯并唑,并为苯并唑的合成提供广泛的反应途径,构成了本综述的主题。文中列举了一些例子,其中与传统加热下的合成相比,微波加热在提高产物产率和缩短反应时间方面具有明显优势。

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