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首页> 外文期刊>ACS applied materials & interfaces >A Boronate Affinity-Assisted SERS Tag Equipped with a Sandwich System for Detection of Glycated Hemoglobin in the Hemolysate of Human Erythrocytes
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A Boronate Affinity-Assisted SERS Tag Equipped with a Sandwich System for Detection of Glycated Hemoglobin in the Hemolysate of Human Erythrocytes

机译:配备了三明治系统的硼酸亲和辅助SERS标签,用于检测人红细胞溶血液中的糖化血红蛋白

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摘要

Phenylboronic acid-functionalized, Ag shell-coated, magnetic, monodisperse polymethacrylate micro spheres equipped with a glycoprotein-sensitive sandwich system were proposed as a surface-enhanced Raman scattering (SERS) substrate for quantitative determination of glycated hemoglobin (HbA1c). The magnetization of the SERS tag and the formation of the Ag shell on the magnetic support were achieved using the bifunctional reactivity of newly synthesized polymethacrylate microspheres. The hemolysate of human red blood cells containing both HbA1c and nonglycated hemoglobin was used for determination of HbA1c. The working principle of the proposed SERS tag is based on the immobilization of HbA1c by cyclic boronate ester formation between glycosyl residues of HbA1c and boronic acid groups of magnetic polymethacrylate microspheres and the binding of p-aminothiophenol (PATP)-functionalized Ag nanoparticles (Ag NPs) carrying another boronic acid ligand via cyclic boronate ester formation via unused glycosyl groups of bound HbA1c. Then, in situ formation of a Raman reporter, 4,4'-dimercaptoazobenzene from PATP under 785 nm laser irradiation allowed for the quantification of HbA1c bound onto the magnetic SERS tag, which was proportional to the HbA1c concentration in the hemolysate of human erythrocytes. The sandwich system provided a significant enhancement in the SERS signal intensity due to the plasmon coupling between Ag NPs and Ag shell-coated magnetic microspheres, and low HbA1c concentrations down to 50 ng/mL could be detected. The calibration curve obtained with a high correlation coefficient between the SERS signal intensity and HbA1c level showed the usability of the SERS protocol for the determination of the HbA1c level in any person.
机译:有人提出将配备有糖蛋白敏感夹心系统的苯硼酸官能化,银壳包被的磁性单分散聚甲基丙烯酸酯微球作为表面增强拉曼散射(SERS)底物,用于定量测定糖化血红蛋白(HbA1c)。使用新合成的聚甲基丙烯酸酯微球的双功能反应性,可以实现SERS标签的磁化和在磁性载体上形成Ag壳。含有HbA1c和非糖化血红蛋白的人红细胞的溶血液用于测定HbA1c。提议的SERS标签的工作原理是基于HbA1c的糖基残基与磁性聚甲基丙烯酸甲酯微球的硼酸基团之间的环状硼酸酯的形成和HbA1c的固定,以及对氨基苯硫酚(PATP)功能化的Ag纳米颗粒(Ag NPs)的结合)通过未结合的HbA1c的未使用糖基通过环状硼酸酯形成而携带另一个硼酸配体。然后,在785 nm激光辐照下由PATP原位形成拉曼报道分子4,4'-二巯基偶氮苯,可以定量结合到磁性SERS标签上的HbA1c,它与人红细胞溶血液中的HbA1c浓度成正比。夹层系统由于Ag NPs和Ag壳包被的磁性微球之间的等离激元耦合而使SERS信号强度显着增强,并且可以检测到低至50 ng / mL的低HbA1c浓度。在SERS信号强度和HbA1c水平之间具有高相关系数的校准曲线表明,SERS协议可用于确定任何人的HbA1c水平。

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