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喹唑啉合成化学的化学见解:最新进展

Chemical Insights Into the Synthetic Chemistry of Quinazolines: Recent Advances.

作者信息

Faisal Muhammad, Saeed Aamer

机构信息

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

出版信息

Front Chem. 2021 Jan 14;8:594717. doi: 10.3389/fchem.2020.594717. eCollection 2020.

Abstract

In medicinal chemistry, one of the most significant heterocyclic compounds are quinazolines, possessing broad range of biological properties such as anti-bacterial, anti-fungal, anti-HIV, anti-cancer, anti-inflammatory, and analgesic potencies. Owing to its numerous potential applications, in the past two decades, there is an increase in the importance of designing novel quinazolines, exploring promising routes to synthesize quinazolines, investigating different properties of quinazolines, and seeking for potential applications of quinazolines. The present review article describes synthesis of quinazolines eco-friendly, mild, atom-efficient, multi-component synthetic strategies reported in the literature. The discussion is divided into different parts as per the key methods involved in the formation of quinazoline skeletons, aiming to provide readers an effective methodology to a better understanding. Consideration has been taken to cover the most recent references. Expectedly, the review will be advantageous in future research for synthesizing quinazolines and developing more promising synthetic approaches.

摘要

在药物化学中,喹唑啉是最重要的杂环化合物之一,具有广泛的生物学特性,如抗菌、抗真菌、抗艾滋病毒、抗癌、抗炎和镇痛活性。由于其众多潜在应用,在过去二十年中,设计新型喹唑啉、探索合成喹唑啉的有前景路线、研究喹唑啉的不同性质以及寻找喹唑啉的潜在应用的重要性不断增加。本综述文章描述了文献中报道的喹唑啉的环保、温和、原子经济、多组分合成策略。根据喹唑啉骨架形成所涉及的关键方法,讨论分为不同部分,旨在为读者提供一种有效的方法以便更好地理解。已考虑涵盖最新参考文献。预期该综述将对未来合成喹唑啉及开发更有前景的合成方法的研究有利。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b9a/7873916/1806dcf0bd09/fchem-08-594717-g0001.jpg

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