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Sensitive Glycoprotein Sandwich Assays by the Synergistic Effect of In Situ Generation of Raman Probes and Plasmonic Coupling of Ag Core-Au Satellite Nanostructures

机译:通过拉曼探针原位生成和银核金Au卫星纳米结构的等离子耦合的协同效应进行灵敏的糖蛋白三明治测定

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Sensitive surface-enhanced Raman scattering (SERS) assays of glycoproteins have been proposed using p-aminothiophenol (PATP)-embedded Ag core-Au satellite nanostructures modified with p-mercaptophenylboronic acid (PMBA) and the self-assembled monolayer of PMBA on a smooth gold-coated wafer. The apparent Raman probe PATP on the surfaces of the Ag cores underwent a photodimerization to generate 4,4'-dimercaptoazobenzene (DMAB) in situ upon excitation of laser, and the in situ generated DMAB acted as the actual Raman probe with considerably strong SERS signals, which was further enhanced by the plasmonic coupling of the Ag core-Au satellite nanostructures due to the synergistic effect. The sandwich assays of glycoproteins showed high sensitivity and excellent selectivity against nonglycoproteins. The Ag core-Au satellite SERS nanostructures can be used for highly sensitive SERS assays of other analytes.
机译:已经提出了使用对氨基硫酚(PATP)嵌入的Ag核心-Au卫星纳米结构修饰的对巯基苯硼酸(PMBA)修饰的糖蛋白的表面敏感拉曼散射(SERS)分析方法,并在光滑的表面上自组装了PMBA单分子膜镀金晶片。 Ag核表面上的表观拉曼探针PATP进行光二聚化,在激光激发后原位生成4,4'-二巯基偶氮苯(DMAB),而原位生成的DMAB充当具有相当强SERS信号的实际拉曼探针,由于协同效应,Ag核心-Au卫星纳米结构的等离子体耦合进一步增强了这种作用。糖蛋白的夹心测定显示出对非糖蛋白的高灵敏度和出色的选择性。银芯金Au卫星SERS纳米结构可用于其他分析物的高灵敏度SERS分析。

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