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Assay of multiplex proteins from cell metabolism based on tunable aptamer and microchip electrophoresis

机译:基于可调适体和微芯片电泳的细胞代谢中的多重蛋白测定

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摘要

A simple and rapid method for multiplex protein assay based on tunable aptamer by microchip electrophoresis has been developed. Different lengths of aptamers can modulate the electrophoretic mobility of proteins, allowing the protein molecules to be effectively separated in hydroxyethyl cellulose buffer with 1.00 mM magnesium ion. A non-specific DNA was exploited as an internal standard to achieve the quantitative assay and to reduce the interference. A fluorescence dye SYBR gold was exploited to improve the sensitivity and to suppress the interference from sample matrix. Under optimum conditions, quantitative assay of PDGF-BB (R-2=0.9986), VEGF(165) (R-2=0.9909), and thrombin (R-2=0.9947) were achieved with a dynamic range in the 5.00-150.0 nM and RSDs in the 5.87-16.3% range. The recoveries were varied from 83.6% to 113.1%. Finally, the proposed method was successfully applied to analyze cell secretions, and then the concentration of PDGF-BB and VEGF(165) were detected from 5.15 nM to 2.03 nM, and 3.14 to 2.53 nM, respectively, indicating the established method can be used to analyze cell secretions. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过微芯片电泳,开发了一种基于可调适体的简单快速的多重蛋白测定方法。不同长度的适体可以调节蛋白质的电泳迁移率,使蛋白质分子可以在含有1.00 mM镁离子的羟乙基纤维素缓冲液中有效分离。非特异性DNA被用作内标,以实现定量测定并减少干扰。开发了一种荧光染料SYBR金,以提高灵敏度并抑制样品基质的干扰。在最佳条件下,以5.00-150.0的动态范围进行了PDGF-BB(R-2 = 0.9986),VEGF(165)(R-2 = 0.9909)和凝血酶(R-2 = 0.9947)的定量测​​定nM和RSD在5.87-16.3%的范围内。回收率从83.6%到113.1%不等。最终,该方法成功地用于细胞分泌分析,然后检测PDGF-BB和VEGF(165)的浓度分别为5.15 nM至2.03 nM和3.14至2.53 nM,表明可以使用该方法。分析细胞分泌物。 (C)2014 Elsevier B.V.保留所有权利。

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