Medicinal and Process Chemistry Division , CSIR-Central Drug Research Institute , Sector 10, Jankipuram Extension, Sitapur Road , Lucknow 226031 India.
Academy of Scientific and Innovative Research (AcSIR) , New Delhi 110001 India.
J Org Chem. 2019 Mar 1;84(5):2660-2675. doi: 10.1021/acs.joc.8b03097. Epub 2019 Feb 20.
Bifunctionalized indoles are an important class of biologically active heterocyclic compounds and potential drug candidates. Because of the lack of efficient synthetic methods, one pot cascade synthesis of these compounds is rare and remains a challenge. To expand this field, we herein disclose a step-economical and temperature tunable strategy wherein the synergistic effect between [hmim]Br-ArSOCl leads exclusively to the formation of 3-arylthio indole via sulfenylation of indole at room temperature, while heating the reaction mixture at 50 °C provided an unexpected 2-halo-3-arylthio indole with construction of C-S and C-S/C-X (X = Cl and Br) bonds without addition of any external halogenating agent via cascade sulfenylation-halogenation reactions under metal-oxidant-base-free conditions. Further, insight into the reaction mechanism provides an unprecedented observation wherein the synergistic interaction between [hmim]Br-ArSOX in the presence of a catalytic amount of water generates arylsulfonic anhydride (ArSO)O in situ as a new sulfur source along with the formation of [hmim]PTS as probed by NMR, ESI-MS, DART-MS, and HPLC studies. Notably, the mixture of bifunctionalized 2-halo(Br/Cl)-3-arylthio indole was smoothly diversified with privileged heterocycle triazole to provide 2-(1 H-triazole-1-yl)-3-arylthio indole, which is an analogue of the potent indole-based anticancer agent.
双功能化吲哚是一类重要的具有生物活性的杂环化合物和潜在的药物候选物。由于缺乏有效的合成方法,一锅多步串联合成这些化合物很少见,仍然是一个挑战。为了拓展这一领域,我们在此披露了一种具有经济性和温度可调性的策略,其中[hmim]Br-ArSOCl 的协同作用可以在室温下通过吲哚的磺酰化反应专一地形成 3-芳基硫代吲哚,而将反应混合物加热至 50°C 时,通过无需添加任何外部卤化剂的串联磺酰化-卤化反应,以意想不到的方式形成构建 C-S 和 C-S/C-X(X = Cl 和 Br)键的 2-卤代-3-芳基硫代吲哚,在无金属氧化剂-碱条件下进行。此外,对反应机制的深入了解提供了一个前所未有的观察结果,即在存在催化量水的情况下,[hmim]Br-ArSOX 的协同相互作用可以原位生成芳基磺酸酐(ArSO)O 作为新的硫源,同时形成 [hmim]PTS,这可以通过 NMR、ESI-MS、DART-MS 和 HPLC 研究来探测。值得注意的是,双功能化 2-卤代(Br/Cl)-3-芳基硫代吲哚的混合物可以与特权杂环三唑顺利多样化,得到 2-(1H-三唑-1-基)-3-芳基硫代吲哚,这是一种强效基于吲哚的抗癌药物的类似物。