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基于分子印迹聚合物的等离子体免疫三明治分析用于快速灵敏测定复杂样品中的痕量糖蛋白

Molecularly Imprinted Polymer-Based Plasmonic Immunosandwich Assay for Fast and Ultrasensitive Determination of Trace Glycoproteins in Complex Samples.

机构信息

State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University , 163 Xianlin Avenue, Nanjing 210023, China.

出版信息

Anal Chem. 2016 Dec 20;88(24):12363-12370. doi: 10.1021/acs.analchem.6b03597. Epub 2016 Dec 8.

Abstract

Glycoproteins play significant roles in many biological processes. Assays of glycoproteins have significant biological importance and clinical values, for which immunoassay has been the workhorse tool. However, immunoassay suffers from some disadvantages, such as poor availability of high-specificity antibodies and limited stability of biological reagents. Herein, we present an antibody-free and enzyme-free approach, called molecularly imprinted polymer (MIP)-based plasmonic immunosandwich assay (PISA), for fast and ultrasensitive detection of trace glycoproteins in complex samples. A gold-based boronate affinity MIP array was used to specifically extract the target glycoprotein from complex samples. After washing away unwanted species, the captured glycoprotein was labeled with boronate affinity silver-based Raman nanotags. Thus, sandwich-like complexes were formed on the array. Upon being shined with a laser beam, the gold-based array generated a surface plasmon wave, which significantly enhanced the surface-enhanced Raman scattering (SERS) signal of the silver-based Raman nanotags. The MIP ensured the specificity of the assay, while the plasmonic detection provided ultrahigh sensitivity. Erythropoietin (EPO), a glycoprotein hormone that controls erythropoiesis or red blood cell production, was employed as a test glycoprotein in this study. Specific detection of EPO in solution down to 2.9 × 10 M was achieved. Using a novel strategy to accommodate the method of standard addition to a logarithmic dose-response relationship, EPO in human urine was quantitatively determined by this approach. The analysis time required only 30 min in total. This approach holds promising application prospects in many areas, such as biochemical research, clinical diagnosis, and antidoping analysis.

摘要

糖蛋白在许多生物过程中发挥着重要作用。糖蛋白的测定具有重要的生物学意义和临床价值,免疫测定一直是这项工作的主要工具。然而,免疫测定存在一些缺点,例如高特异性抗体的可用性差和生物试剂的稳定性有限。在此,我们提出了一种无抗体和无酶的方法,称为基于分子印迹聚合物(MIP)的等离子体免疫三明治分析(PISA),用于快速和超灵敏检测复杂样品中的痕量糖蛋白。使用基于金的硼酸亲和 MIP 阵列从复杂样品中特异性提取靶糖蛋白。在洗掉不需要的物质后,捕获的糖蛋白用硼酸亲和银基拉曼纳米标签标记。因此,在阵列上形成了类似三明治的复合物。用激光束照射时,基于金的阵列会产生表面等离子体波,从而显著增强银基拉曼纳米标签的表面增强拉曼散射(SERS)信号。MIP 确保了测定的特异性,而等离子体检测提供了超高的灵敏度。促红细胞生成素(EPO)是一种糖蛋白激素,它控制红细胞生成或红细胞的产生,在本研究中被用作测试糖蛋白。在溶液中,EPO 的特异性检测下限达到 2.9×10 M。通过采用一种新策略,将标准加入法与对数剂量反应关系相结合,该方法可定量测定人尿中的 EPO。该方法总共需要 30 分钟的分析时间。该方法在生化研究、临床诊断和反兴奋剂分析等许多领域具有广阔的应用前景。

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