Wang Bin, Zhang Yan, He Xiangyan
Department of Pharmacy, People's Hospital of Xinjiang Uygur Autonomous Region Urumqi Xinjiang Uygur Autonomous Region China
Scientific Research and Education Centre, People's Hospital of Xinjiang Uygur Autonomous Region Urumqi Xinjiang Uygur Autonomous Region China
RSC Adv. 2023 Oct 23;13(44):30985-30989. doi: 10.1039/d3ra05748h. eCollection 2023 Oct 18.
A flexible, efficient, and practical synthesis route was developed to synthesize an OSW-1 disaccharide. The synthesis took 13 steps from l-arabinose and d-xylose derivatives, and the overall yield was 7.2%. The region preferentially protects various d-xylose hydroxides because the TBS group selectively reacts with this hydroxide at low concentrations due to greater activity at the C-4 hydroxyl of d-xylose. Then, high efficiency selectively protects C-2 hydroxyl and C-3 hydroxyl of d-xylose, respectively. The first high yield of glycosylation on an OSW-1 synthesis disaccharide was achieved by taking sulfide donor 4 with β-PMP anomeric l-arabinose acceptor 12. The cytotoxicity reveals that the analogy has a high IC50 for a variety of cell types. This approach should provide a versatile way to modify OSW-1's disaccharide.
开发了一种灵活、高效且实用的合成路线来合成OSW-1二糖。该合成从L-阿拉伯糖和D-木糖衍生物开始,共13步,总产率为7.2%。该区域优先保护各种D-木糖羟基,因为叔丁基二甲基硅烷基(TBS)基团在低浓度下会由于D-木糖C-4羟基的活性更高而选择性地与该羟基反应。然后,分别高效地选择性保护D-木糖的C-2羟基和C-3羟基。通过使用硫化物供体4与β-对甲氧基苯基(β-PMP)异头L-阿拉伯糖受体12,首次在OSW-1合成二糖上实现了高产率的糖基化。细胞毒性表明该类似物对多种细胞类型具有高半数抑制浓度(IC50)。这种方法应该为修饰OSW-1的二糖提供一种通用的方法。