铬烯类生物活性分子的合成方法综述

Zainab Sallal Abdulsahib, R. M. Shakir
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引用次数: 1

摘要

铬被认为是一个与苯环融合的吡喃环,它存在于许多植物中,是许多重要化合物的一部分,如花青素、花青素、儿茶素和黄酮。这些化合物包括在“类黄酮”和“异类黄酮”的标题下。这些化合物是众所周知的生物活性分子,具有广泛的药用价值。根据这些药动学特征,这类化合物及其衍生物受到了许多研究者的关注。人们已经合成了许多铬衍生物,并对其治疗多种疾病的生物学效应进行了研究。此外,研究人员对寻找合成铬衍生物的新方法表现出广泛的兴趣。这些方法依赖于使用一种新的催化剂来提高该反应的产率或缩短反应时间。另一方面,通过使用新的反应物和新的底物,发现了新的方法。本文综述了近年来合成铬烯衍生物的重要方法,并对其生物活性进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Brief Review: Some Interesting Methods of Synthesis Chromene Derivatives as Bioactive Molecules
Chromene is considered a fused pyran ring with a benzene ring, which is found in many plants and is part of many important compounds such as anthocyanidins, anthocyanins, catechins, and flavanones. These compounds are included under the headings "flavonoids" and "iso-flavonoids." These compounds are well known as bioactive molecules with wide medicinal uses. According to these pharmacokinetic characteristics, many researchers are giving more attention to this type of compound and its derivatives. Many chromene derivatives have been synthesized to study their biological effects for the treatment of many diseases. Furthermore, the researcher displayed wide interest in finding new methods for synthesizing chromene derivatives. These methods depend on utilizing a new catalyst to increase the yield of this reaction or reduce the time of the reaction. On the other hand, new methods were found by using a new reactant and a new substrate. This review will present the most recent important methods for the synthesis of chromene derivatives as well as an examination of their biological activity. 
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