Carbohydrates are involved in manyi mportant pathological processes, such as bacterial and viral infections, by meanso fc arbohydrate-protein interactions. Glycoconjugates with multiple carbohydrates are involved in multivalent interactions, thus increasing their binding strengths to proteins. In this work, we report the efficient synthesis of novel muramic and glucuronic acid glycodendrimers as potential Denguev irus antagonists. Aromatic scaffolds functionalized with at erminal ethynylg roups were coupledt o muramic and glucuronic acid azides by click chemistry througho ptimized synthetic strategiest oa fford the desired glycodendrimers with high yields. Surface Plasmon Resonance studies have demonstrated that the compounds reported bind efficiently to the Dengue virus envelopeprotein. Molecular modelling studies were carried out to simulate and explain the binding observed. These studies confirm that efficient chemical synthesis of glycodendrimers can be broughta bout easily offering av ersatile strategy to find new active compounds against Dengue virus.