Stereoselective C1-Arylation of Native Sugars via Ligand-Promoted Nickel Catalysis

化学 立体选择性 催化作用 溶解度 有机化学 组合化学 选择性 癌细胞 癌症 化学合成 单糖
作者
Heng Lu,Yuxin Li,Nan Ma,Ran Chen,Yue Wang,Mingjie Chen,Wei Zhang,Xiaoqin Wang,Haojie Jin,Chunyong Ding,Shijie Chen,Ao Zhang,Zhoulong Fan
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
标识
DOI:10.1021/jacs.6c06488
摘要

Aryl C-glycosides represent a valuable class of carbohydrates with broad biological activity in drug discovery, yet their rapid and stereoselective synthesis from unprotected native saccharides remains a significant challenge. Here we report a nickel-catalyzed, ligand-promoted stereoselective C1-arylation of unprotected saccharides with aryl bromides, enabled by glycosyl sulfonylhydrazide donors that are accessible in one step from native sugars. Notably, a series of N,N′ -disulfonylpyridinedicarboxamidine tridentate ligands was developed and found to be critical for achieving both high reactivity and anomeric selectivity. The present method accommodates a broad range of aryl and heteroaryl bromides and is applicable to diverse mono- and oligosaccharides. To showcase the synthetic utility of this approach, we constructed a Taxol-sugar conjugate library. In vitro anticancer activity studies revealed that most conjugates retained significant antiproliferative activity against the tested cancer cell lines, while compound 6n was identified as selectively targeting glucose-dependent cancer cells with markedly improved water solubility compared with Taxol, emerging as a promising lead compound for cancer therapy.
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