Photo-Induced Stereoselective Synthesis of C-Glycosides via Conformation-Locked Glycosyl Radical Coupling
Shuhong Huang1,2,3, Suchao Wang2, Pu Liu2,4
1State Key Laboratory Basis of Xinjiang Indigenous Medicinal Plants Resource Utilization, Xinjiang Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Urumqi 830011, P. R. China.
Abstract:
C-glycosides are crucial scaffolds in the development of carbohydrate-based drugs, owing to their favorable pharmacological properties and metabolic stability. However, the stereoselective synthesis of specific anomers under mild conditions remains a significant challenge, particularly for the β-anomer. In this study, we developed a visible-light-mediated, photocatalyst- and metal-free strategy for the stereoselective synthesis of β-alkyl C-glycosides via radical coupling. The pivot of this methodology is the utilization of bulky silyl-protected 2,3,5,6-tetrafluoropyridin-4-ylthio (SPyf) glycosyl precursors, which induce a conformational flip to the 1C4-chair form, thereby overriding the inherent bias of the radical intermediates. This operationally simple method exhibits high stereoselectivity and functional group tolerance and is particularly efficient for the synthesis of β-configured C-xylopyranosides.
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