点击化学
化学
炔烃
叠氮化物
碳二亚胺
表面改性
环加成
组合化学
微泡
外体
共轭体系
核酸
胶束
水溶液
高分子化学
有机化学
生物化学
催化作用
小RNA
聚合物
物理化学
基因
作者
Tyson Smyth,Krastina Petrova,Nicole M. Payton,Indushekhar Persaud,Jasmina S. Redzic,Michael W. Graner,Peter Smith‐Jones,Thomas J. Anchordoquy
摘要
A method for conjugation of ligands to the surface of exosomes was developed using click chemistry. Copper-catalyzed azide alkyne cycloaddition (click chemistry) is ideal for biocojugation of small molecules and macromolecules to the surface of exosomes, due to fast reaction times, high specificity, and compatibility in aqueous buffers. Exosomes cross-linked with alkyne groups using carbodiimide chemistry were conjugated to a model azide, azide-fluor 545. Conjugation had no effect on the size of exosomes, nor was there any change in the extent of exosome adherence/internalization with recipient cells, suggesting the reaction conditions were mild on exosome structure and function. We further investigated the extent of exosomal protein modification with alkyne groups. Using liposomes with surface alkyne groups of a similar size and concentration to exosomes, we estimated that approximately 1.5 alkyne groups were present for every 150 kDa of exosomal protein.
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