Author/Authors :
Joseph M. Langenhan، نويسنده , , Matthew M. Endo، نويسنده , , Jeffrey M. Engle، نويسنده , , Liane L. Fukumoto، نويسنده , , Derek R. Rogalsky، نويسنده , , Lauren K. Slevin، نويسنده , , Lindsay R. Fay، نويسنده , , Ryan W. Lucker، نويسنده , , James R. Rohlfing، نويسنده , , Kyle R. Smith، نويسنده , , Anja E. Tjaden، نويسنده , , Halina M. Werner، نويسنده ,
Abstract :
Cardenolides such as digitoxin have been shown to inhibit cancer cell growth, to reduce cancer metastasis, and to induce apoptosis in tumor cells. Among the most potent digitoxin-based cytotoxins identified to date are MeON-neoglycosides generated via oxyamine neoglycosylation. Here, we report our studies of oxyamine neoglycosylation aimed at facilitating the elucidation of linkage-diversified digitoxin neoglycoside structure–activity relationships. We identified conditions suitable for the convenient synthesis of digitoxin neoglycosides and found that sugar structure, rather than RON-glycosidic linkage, exerts the strongest influence on neoglycoside yield and stereochemistry. We synthesized a library of digitoxin neoglycosides and assessed their cytotoxicity against eight human cancer cell lines. Consistent with previous findings, our data show that the structure of RON-neoglycosidic linkages influences both the potency and selectivity of digitoxin neoglycosides.
Keywords :
Glycoconjugate , Glycosylalkoxylamines , Hydrolysis rates , Cardenolides , Digitoxin