Kundu Arijit, Mukhopadhyay Chhanda
Department of Chemistry, Maulana Azad College, Kolkata-700013, India.
Department of Chemistry, University of Calcutta, Kolkata-700009, India.
Curr Top Med Chem. 2024 Aug 27. doi: 10.2174/0115680266319238240821080203.
Bis(indolyl)Methanes are a major class of heterocycles with considerable promise for technological and biological applications and being fluorescent active as well. Considering the extensive quantity of work on various synthetic techniques, the objective of this study is to measure the previous and current status of research studies related to different types of Bis(indolyl)methane (BIM) derivatives. Currently, research is focused on developing green synthetic strategies for dependable, sustainable and environmentally friendly synthetic processes. The present literature describes the formation of BIM moieties starting from suitable precursors using conventional reaction procedures, as well as reactions mediated by microwaves, ultrasounds, organocatalysts, transition metal catalysts, metal-free ionic liquid catalysts, and other environmentally friendly reaction protocols. The current review discusses the explosive development of different environmentally friendly synthesis routes for bis(indolyl)methane and its analogues during the past few decades. Moreover, this study includes the biological activities such as antibacterial, anticancer, anti-inflammatory, etc., of BIM derivatives, which have been investigated in recent years.
双(吲哚基)甲烷是一类重要的杂环化合物,在技术和生物应用方面具有广阔前景,且具有荧光活性。鉴于在各种合成技术方面已有大量工作,本研究的目的是衡量与不同类型双(吲哚基)甲烷(BIM)衍生物相关的研究的既往和当前状况。目前,研究集中于开发可靠、可持续且环境友好的合成工艺的绿色合成策略。现有文献描述了使用常规反应程序从合适的前体开始形成BIM部分,以及由微波、超声、有机催化剂、过渡金属催化剂、无金属离子液体催化剂和其他环境友好反应方案介导的反应。本综述讨论了过去几十年中双(吲哚基)甲烷及其类似物不同环境友好合成路线的迅猛发展。此外,本研究还包括近年来已被研究的BIM衍生物的抗菌、抗癌、抗炎等生物活性。