首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Analysis of immunoarrays using a gold grating-based dual mode surface plasmon-coupled emission (SPCE) sensor chip
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Analysis of immunoarrays using a gold grating-based dual mode surface plasmon-coupled emission (SPCE) sensor chip

机译:使用基于金光栅的双模表面等离子体激元耦合发射(SPCE)传感器芯片对免疫阵列进行分析

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摘要

We have developed a novel dual mode immunoassay platform that combines the advantages of real-time, label free measurement of surface plasmon resonance (SPR) and the highly directional surface plasmon-coupled emission (SPCE) using a gold grating-based sensor chip. Since only fluorophore-labeled analyte molecules that are close to the metal surface of the sensor chip will couple to the surface plasmon, SPCE detection is highly surface-specific leading to background suppression and increased sensitivity. Theoretical calculations were done to find SPR and SPCE angles for a sensor chip optimized for Alexa Fluor 647. We have confirmed the SPR and SPCE responses on the dual mode sensor chip using Alexa Fluor 647 labeled anti-mouse IgG. Signal fluctuation of the dual mode sensor chip reader was below 1.2% and 0.8% for SPR and SPCE, respectively. The SPR response in this configuration showed a minimum detection level of 1 μg ml?1, and the SPCE response showed a minimum detection level of 1 ng ml?1 for the same sample. A range of human IgG concentrations in human serum was also analyzed with the dual mode sensor chip. The SPCE measurement is more sensitive than the SPR real-time measurement, and substantially extends the dynamic range of the assay platform, as well as enabling independent measurements of co-localized analytes on the same sensor chip region of interest. Since this assay platform is capable of measuring more than 1000 spatially encoded regions of interest on a 1 cm2 sensor chip, it has the potential for high-content analyses of biological samples with both research and clinical applications.
机译:我们已经开发了一种新型的双模式免疫测定平台,该平台结合了使用基于金光栅的传感器芯片对表面等离振子共振(SPR)进行实时,无标记测量和高度定向的表面等离激元耦合发射(SPCE)的优势。由于只有靠近传感器芯片金属表面的荧光团标记的分析物分子会与表面等离激元耦合,因此SPCE检测具有高度的表面特异性,从而可以抑制背景并提高灵敏度。进行了理论计算,以找到针对Alexa Fluor 647优化的传感器芯片的SPR和SPCE角度。我们已经使用Alexa Fluor 647标记的抗小鼠IgG证实了双模传感器芯片上的SPR和SPCE响应。对于SPR和SPCE,双模式传感器芯片读取器的信号波动分别低于1.2%和0.8%。在这种配置下,SPR响应的最低检测水平为1μgml?1,而同一样品的SPCE响应的最低检测水平为1 ng ml?1。还使用双模式传感器芯片分析了人血清中的一系列人IgG浓度。 SPCE测量比SPR实时测量更为灵敏,并大大扩展了测定平台的动态范围,并且能够对感兴趣的同一传感器芯片区域上的共定位分析物进行独立测量。由于该测定平台能够在1 cm2传感器芯片上测量1000多个空间编码的目标区域,因此具有在研究和临床应用中对生物样品进行高含量分析的潜力。

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