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Catalyst-Free Cycloaddition Reaction for the Synthesis of Glyconanoparticles

机译:无催化剂的环加成反应合成糖醇纳米颗粒

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A new conjugation method for the immobilization of carbohydrates on nanomaterials was demonstrated simply by mixing perfluorophenyl azide-functionalized silica nanoparticles (SNPs), an amine-derivatized carbohydrate, and phenylacetaldehyde under ambient conditions without any catalyst. The density of carbohydrates on the glyconanoparticles was determined using the quantitative F-19 NMR (F-19 qNMR) technique; for example, the density of D-mannose (Man) on Man-SNPs was 2.5 +/- 0.2 x 10(-16) nmolm(2). The glyconanoparticles retained their binding affinity and selectivity toward cognate lectins. The apparent dissociation constant of the glyconanoparticles was measured by a fluorescence competition assay, where the binding affinity of Man-SNPs was almost 4 orders of magnitude higher than that of Man with concanavalin A. Moreover, even with a ligand density of 2.6 times lower than Man-SNPs synthesized by the copper catalyzed azide-alkyne cycloaddition, the binding affinity of Man-SNPs prepared by the current method was more than 4 times higher.
机译:通过在环境条件下不加任何催化剂的情况下,将全氟苯基叠氮化物官能化的二氧化硅纳米粒子(SNP),胺衍生的碳水化合物和苯乙醛混合在一起,即可简单地证明一种将碳水化合物固定在纳米材料上的新的共轭方法。使用定量F-19 NMR(F-19 qNMR)技术确定糖纳米颗粒上碳水化合物的密度;例如,Man-SNP上D-甘露糖(Man)的密度为2.5 +/- 0.2 x 10(-16)nmol / nm(2)。糖纳米颗粒保留了其对同源凝集素的结合亲和力和选择性。糖纳米颗粒的表观解离常数通过荧光竞争测定法进行测定,其中Man-SNP的结合亲和力比Man与伴刀豆球蛋白A的结合亲和力高约4个数量级。此外,即使配体密度比其低2.6倍通过铜催化的叠氮化物-炔烃环加成反应合成的Man-SNPs,目前制备的Man-SNPs的结合亲和力高4倍以上。

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