Lu Helin, Zhu Guirong, Tang Tiange, Ma Zhuang, Chen Qin, Chen Zhilong
School of Pharmacy, Huazhong University of Science and Technology (HUST), 13 Hangkong Road, Wuhan, Hubei 430030, China.
Research Center for Molecular Recognition and Synthesis, Department of Chemistry, Fudan University, 220 Handan Road, Shanghai 200433, China.
iScience. 2019 Dec 20;22:214-228. doi: 10.1016/j.isci.2019.11.021. Epub 2019 Nov 16.
C2, C3-disubstituted indole is one of the most frequently encountered motifs in bioactive alkaloids and medicinal chemistry. Thus, developing novel, concise, and efficient access to it is highly desired in drug discovery. Herein, we present such an approach to this scaffold by direct oxidative coupling of C2-substituted indoles and enolates. Compared with indole bearing no C2-substituent, higher yields (up to 96%) were obtained for C2-substituted indoles in most cases. Mechanistic studies showed the reaction went through a Fe-chelated radical-anion oxidative coupling procedure promoted by C2-substituent on indole by two means: (1) stabilizing C2-radical intermediate during the reaction; (2) reducing indole homocoupling. This approach serves as a synthetic useful tool to quickly build up bioactive small molecule library of C2, C3-disubstituted indoles, and several products showed promising anticancer activities. Besides, indomethacin and its analogs were conveniently prepared in three-step sequence efficiently, indicating the potential application of our approach in medicinal chemistry.
C2,C3-二取代吲哚是生物活性生物碱和药物化学中最常见的结构单元之一。因此,在药物研发中非常需要开发新颖、简洁且高效的合成方法来获得该结构。在此,我们报道了一种通过C2-取代吲哚与烯醇盐的直接氧化偶联来构建该骨架的方法。与无C2-取代基的吲哚相比,大多数情况下C2-取代吲哚能获得更高的产率(高达96%)。机理研究表明,该反应通过吲哚上C2-取代基以两种方式促进的铁螯合自由基-阴离子氧化偶联过程进行:(1)在反应过程中稳定C2-自由基中间体;(2)减少吲哚自身偶联。该方法是一种有用的合成工具,可快速构建C2,C3-二取代吲哚的生物活性小分子库,并且几种产物显示出有前景的抗癌活性。此外,通过三步反应高效便捷地制备了吲哚美辛及其类似物,表明我们的方法在药物化学中的潜在应用。