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一种用于高性能无标记免疫分析的微孔阵列结构表面等离子体共振成像金芯片。

A microwell array structured surface plasmon resonance imaging gold chip for high-performance label-free immunoassay.

作者信息

Mei Yihong, Li Ling, Chen Nan, Zhong Changyin, Hu Weihua

机构信息

Institute for Clean Energy & Advanced Materials, School of Materials & Energy, Southwest University, 2 Rd Tiansheng, Beibei, Chongqing 404100, China.

出版信息

Analyst. 2020 Sep 28;145(19):6395-6400. doi: 10.1039/d0an01169j.

Abstract

Surface plasmon resonance imaging (SPRi) offers a compelling method for high-throughput, real-time, and label-free biomolecular interaction studies and immunoassays, but its performance suffers from limited intrinsic sensitivity and low-contrast SPRi images. Herein we report a high-performance SPRi chip featuring patterned microwell array constructed by photolithography of adhesive polydopamine (PDA) thin film on conventional gold chip. The chip allows for the facile construction of region-defined sensing array on its surface with improved intrinsic SPRi sensitivity due to the intensified surface plasmon wave (SPW) in the microwells. The immunoassay performance of the as-designed SPRi chip is evaluated by using anti-ochratoxin A (anti-OTA) monoclonal antibody as a model target. The results show that this microwell array structured gold chip exhibits ca. 18%-32% higher signal intensity than the conventional gold chip when detecting anti-OTA at different concentrations, and the noise remains at the same level, showing enhanced intrinsic sensitivity. Meanwhile, this microwell-structured chip affords clear and high-contrast SPRi images with well-defined sensing areas, which greatly facilitates the extraction and quantitative analysis of detection signals while efficiently suppressing the disturbance from background areas.

摘要

表面等离子体共振成像(SPRi)为高通量、实时且无标记的生物分子相互作用研究和免疫分析提供了一种引人注目的方法,但其性能受到固有灵敏度有限和SPRi图像对比度低的影响。在此,我们报道了一种高性能的SPRi芯片,其具有通过在传统金芯片上对粘性聚多巴胺(PDA)薄膜进行光刻构建的图案化微孔阵列。该芯片能够在其表面轻松构建区域定义的传感阵列,由于微孔中表面等离子体波(SPW)的增强,其固有SPRi灵敏度得到提高。通过使用抗赭曲霉毒素A(anti-OTA)单克隆抗体作为模型靶点,评估了所设计的SPRi芯片的免疫分析性能。结果表明,在检测不同浓度的anti-OTA时,这种微孔阵列结构的金芯片比传统金芯片的信号强度高约18%-32%,且噪声保持在同一水平,显示出增强的固有灵敏度。同时,这种微孔结构的芯片提供了清晰且高对比度的SPRi图像,传感区域明确,这极大地便于检测信号的提取和定量分析,同时有效抑制背景区域的干扰。

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