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Reproducible and label-free biosensor for the selective extraction and rapid detection of proteins in biological fluids

机译:可重现且无标记的生物传感器用于选择性提取和快速检测生物流体中的蛋白质

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摘要

Erythropoietin (EPO), a glycoprotein hormone of ∼34 kDa, is an important hematopoietic growth factor, mainly produced in the kidney and controls the number of red blood cells circulating in the blood stream. Sensitive and rapid recombinant human EPO (rHuEPO) detection tools that improve on the current laborious EPO detection techniques are in high demand for both clinical and sports industry. A sensitive aptamer-functionalized biosensor (aptasensor) has been developed by controlled growth of gold nanostructures (AuNS) over a gold substrate (pAu/AuNS). The aptasensor selectively binds to rHuEPO and, therefore, was used to extract and detect the drug from horse plasma by surface enhanced Raman spectroscopy (SERS). Due to the nanogap separation between the nanostructures, the high population and distribution of hot spots on the pAu/AuNS substrate surface, strong signal enhancement was acquired. By using wide area illumination (WAI) setting for the Raman detection, a low RSD of 4.92% over 150 SERS measurements was achieved. The significant reproducibility of the new biosensor addresses the serious problem of SERS signal inconsistency that hampers the use of the technique in the field. The WAI setting is compatible with handheld Raman devices. Therefore, the new aptasensor can be used for the selective extraction of rHuEPO from biological fluids and subsequently screened with handheld Raman spectrometer for SERS based in-field protein detection.Electronic supplementary materialThe online version of this article (doi:10.1186/s12951-015-0102-8) contains supplementary material, which is available to authorized users.
机译:促红细胞生成素(EPO)是一种约34 kDa的糖蛋白激素,是一种重要的造血生长因子,主要在肾脏中产生,并控制血液中循环的红细胞的数量。在临床和体育行业中都对灵敏,快速的重组人EPO(rHuEPO)检测工具进行了改进,这些工具改进了当前辛苦的EPO检测技术。通过在金基底(pAu / AuNS)上控制金纳米结构(AuNS)的生长,已经开发了灵敏的适体功能化生物传感器(aptasensor)。适体传感器与rHuEPO选择性结合,因此通过表面增强拉曼光谱(SERS)从马血浆中提取和检测药物。由于纳米结构之间的纳米间隙分离,pAu / AuNS衬底表面上热点的高分布和分布,获得了强大的信号增强。通过使用广域照明(WAI)设置进行拉曼检测,可以在150次SERS测量中实现4.92%的低RSD。新型生物传感器的显着可重复性解决了SERS信号不一致的严重问题,该问题阻碍了该技术在现场的使用。 WAI设置与手持式拉曼设备兼容。因此,新的适体传感器可用于从生物体液中选择性提取rHuEPO,随后通过手持式拉曼光谱仪进行筛选以进行基于SERS的现场蛋白质检测。电子补充材料本文的在线版本(doi:10.1186 / s12951-015- 0102-8)包含补充材料,授权用户可以使用。

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