Department of Chemistry , Indian Institute of Technology Madras , Chennai 600036 , India.
J Org Chem. 2018 Sep 7;83(17):9604-9618. doi: 10.1021/acs.joc.8b00748. Epub 2018 Aug 27.
A one-pot iminium-ion-based strategy has been developed for the synthesis of structurally novel iminosugar-based hybrid molecules. Iminium ion derived from l-rhamnose lactol-mesylate reacted with electron-rich aromatic systems in an inter/intra molecular fashion to furnish pyrrolidine-based iminosugar C-aryl glycosides with a high degree of stereoselectivity. Iminium ion also reacted readily with active methylene compounds such as 4-hydroxycoumarin, 4-hydroxyquinolinone, and lawsone to provide iminosugar C-coumarin/quinolinone/naphthoquinonyl glycosides in very good yields. Azomethine ylide generated from an iminium ion derivative underwent dipolar cycloaddition reaction with 1,4-quinones to furnish novel isopyrrolonaphtho/anthroquinon-based iminosugar-hybrids. The preliminary cytotoxic activities of some of the synthesized iminosugar-hybrids have been assayed against various human cancer cell lines and some of the hybrid molecules exhibited promising anticancer activities.
已开发出一种基于亚胺离子的一锅法策略,用于合成结构新颖的基于氨基糖的杂合分子。来源于 l-鼠李糖内酯-甲磺酸的亚胺离子以分子间/分子内的方式与富电子芳环体系反应,以高立体选择性得到基于吡咯烷的氨基糖 C-芳基糖苷。亚胺离子还可与活性亚甲基化合物(如 4-羟基香豆素、4-羟基喹啉酮和劳氏碱)迅速反应,以高收率得到氨基糖 C-香豆素/喹啉酮/萘醌基糖苷。由亚胺离子衍生物生成的吖丙啶叶立德与 1,4-醌发生偶极环加成反应,生成新型异吡咯并萘醌/蒽醌基氨基糖杂合物。已对一些合成的氨基糖杂合物的部分进行了针对各种人类癌细胞系的初步细胞毒性测定,一些杂合分子显示出有希望的抗癌活性。