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Bioresponsive hydrogel microlenses

机译:生物响应水凝胶微透镜

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We report investigations of bioresponsive hydrogel microlenses as a new protein detection technology. Stimuli-responsive poly(N-isopropylacrylamide-co-acrylic acid) (pNIPAm-co-AAc) microgels have been synthesized via free-radical precipitation polymerization. These hydrogel microparticles were then functionalized with biotin via EDC coupling. Hydrogel microlenses were prepared from the particles via Coulombic assembly onto a silane-modified glass substrate. Arrays containing both pNIPAm-co-AAc microgels (as an internal control) and biotinylated pNIPAm-co-AAc microgels were then used to detect multivalent binding of both avidin and polyclonal anti-biotin. Protein binding was determined by monitoring the optical properties of the microlenses using a brightfield optical microscopy technique. The microlens method is shown to be very specific for the target protein, with no detectable interference from nonspecific protein binding. Finally, the reversibility of the hydrogel microlens assay has been studied in the case of anti-biotin to determine the potential application of the microlens assay technology in a displacement-type assay. These results suggest that the microlens method may be an appropriate one for label-free detection of proteins or small molecules via displacement of tethered protein-ligand pairs.
机译:我们报告生物反应水凝胶微透镜作为一种新的蛋白质检测技术的调查。通过自由基沉淀聚合合成了刺激响应的聚(N-异丙基丙烯酰胺-共丙烯酸)(pNIPAm-co-AAc)微凝胶。然后通过EDC偶联将这些水凝胶微粒用生物素官能化。由颗粒通过库仑组装将水凝胶微透镜制备到硅烷改性的玻璃基板上。然后将同时包含pNIPAm-co-AAc微凝胶(作为内部对照)和生物素化的pNIPAm-co-AAc微凝胶的阵列用于检测抗生物素蛋白和多克隆抗生物素的多价结合。通过使用明场光学显微镜技术监测微透镜的光学性质来确定蛋白质结合。微透镜方法显示出对靶蛋白非常特异性,没有非特异性蛋白结合的可检测干扰。最后,已经在抗生物素的情况下研究了水凝胶微透镜测定法的可逆性,以确定微透镜测定技术在置换型测定中的潜在应用。这些结果表明,微透镜方法可能是一种适合的方法,可通过拴系的蛋白质-配体对置换来无标记地检测蛋白质或小分子。

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