材料科学
DC标志
纳米颗粒
刀豆蛋白A
凝集素
聚糖
纳米技术
浊度法
IC50型
傅里叶变换红外光谱
生物物理学
组合化学
化学
体外
生物化学
抗原
树突状细胞
化学工程
生物
免疫学
糖蛋白
工程类
作者
C. Pérez‐Alonso,Fátima Lasala,Laura Rodríguez‐Pérez,Rafaël Delgado,Javier Rojo,Javier Ramos‐Soriano
标识
DOI:10.1021/acsami.4c15918
摘要
Small solid silica nanoparticles (SiNPs) have been used for multivalent carbohydrate presentation in DC-/L-SIGN-mediated viral infection models. Glycosylated SiNPs (glycoSiNPs) were fully characterized by different experimental techniques, including NMR, DLS, TGA, FTIR, and XPS, which confirmed their chemical structures. As a proof-of-concept, the capacity of glycoSiNPs to interact with Concanavalin A (ConA), a model lectin, using DLS binding experiments and UV-vis turbidimetry assays was analyzed. Their antiviral activity was assessed in a cellular assay using an artificial Ebola virus, demonstrating the potent inhibition of DC-SIGN-mediated infection. Notably, glycoSiNPs functionalized with a trivalent Manα1,2Man glycodendron exhibited the strongest inhibitory activity, with an IC50 of 135 ng/mL and a 170-fold lower efficiency in blocking L-SIGN-mediated viral infection. These findings suggest that glycoSiNPs present a promising approach for developing antiviral agents that selectively target the DC-SIGN pathway over the L-SIGN one.
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