Zhao Yi-Shu, Ruan Hong-Li, Wang Xiu-Yang, Chen Chen, Song Pei-Fang, Lü Cheng-Wei, Zou Li-Wei
Institute of Interdisciplinary Integrative Medicine Research, Shanghai University of Traditional Chinese Medicine Shanghai 201203 People's Republic of China
School of Chemistry and Chemical Engineering, Liaoning Normal University Dalian 116029 People's Republic of China
RSC Adv. 2019 Dec 3;9(68):40168-40175. doi: 10.1039/c9ra08593a. eCollection 2019 Dec 2.
A mild strategy for visible-light-induced synthesis of bis(indolyl)methanes was developed using aromatic aldehydes and indole as substrates. This reaction could be performed at room temperature under catalyst- and additive-free conditions to synthesize a series of bis(indolyl)methanes in good to excellent yields. In addition, all synthesized bis(indolyl)methanes together with β-substituted indole derivatives synthesized according to our previous work, were evaluated for their inhibitory effect against human carboxylesterase (CES1 and CES2). Primary structure-activity relationship analysis of all tested compounds showed that the modifications of β-substituted indole at the β-site with another indolyl group led to a significant enhancement of the inhibitory effect on CES2, and the bisindolyl structure is essential for CES2 inhibition. These results demonstrated that these bis(indolyl)methanes are potent and selective CES2 inhibitors, which might be helpful for medicinal chemists to design and develop more potent and selective CES2 inhibitors for biomedical applications.
以芳香醛和吲哚为底物,开发了一种温和的可见光诱导合成双(吲哚基)甲烷的策略。该反应可在室温下在无催化剂和添加剂的条件下进行,以良好至优异的产率合成一系列双(吲哚基)甲烷。此外,对所有合成的双(吲哚基)甲烷以及根据我们之前的工作合成的β-取代吲哚衍生物进行了抗人羧酸酯酶(CES1和CES2)抑制作用的评估。对所有测试化合物的一级构效关系分析表明,β-取代吲哚在β位被另一个吲哚基修饰导致对CES2的抑制作用显著增强,并且双吲哚基结构对于CES2抑制至关重要。这些结果表明,这些双(吲哚基)甲烷是有效的和选择性的CES2抑制剂,这可能有助于药物化学家设计和开发更有效的和选择性的CES2抑制剂用于生物医学应用。