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基于表面等离子体共振成像(SPRi)的传感:一种新的信号采样和管理方法。

Surface plasmon resonance imaging (SPRi)-based sensing: a new approach in signal sampling and management.

机构信息

Dipartimento di Chimica Ugo Schiff, Università degli Studi di Firenze, Via della Lastruccia 3, 50019 Sesto Fiorentino, Italy.

出版信息

Biosens Bioelectron. 2010 Dec 15;26(4):1380-5. doi: 10.1016/j.bios.2010.07.056. Epub 2010 Jul 21.

Abstract

Surface plasmon resonance imaging (SPRi) is at the forefront of optical sensing, allowing real-time and label free simultaneous multi-analyte measurements. It represents an interesting technology for studying a broad variety of affinity interactions with impact in chemistry, both in fundamental and applied research. Signal sampling and management is a key step in SPRi measurements to achieve successful performances. This work aims to develop a strategy for selecting the sensing areas, called Regions of Interest (ROIs), to be sampled for recording SPRi signals that could results in improved sensor performances. The approach has been evaluated using antigen-antibody interaction: anti-human IgGs are immobilized on the chip surface in an array format, while the specific ligand (hIgG antigen) is in solution. This approach has general applicability and demonstrates that rational selection of sensitive areas and standard management of SPRi data has dramatic impact on sensor behaviour. The criteria of the method are: (a) creation of high density maps of ROIs, (b) evaluation of the SPRi binding signals on all the ROIs during a pre-analysis step, (c) 3D elaboration of the results, and (d) ranking of the ROIs for their final selection in further biosensor analysis. Using standard solution of antigen, three different ROIs selection approaches have been compared for their analytical performances. The proposed innovative method results to be the best one for SPRi-based sensing applications.

摘要

表面等离子体共振成像(SPRi)处于光学传感的前沿,能够实时、无标记地同时进行多分析物测量。它是一种很有前途的技术,可用于研究各种亲和相互作用,在基础研究和应用研究中都有重要影响。信号采样和管理是 SPRi 测量中的关键步骤,可实现出色的性能。本工作旨在开发一种用于选择传感区域(称为感兴趣区域(ROI))的策略,以便对 SPRi 信号进行采样,从而提高传感器性能。该方法已通过抗原-抗体相互作用进行了评估:将抗人 IgG 以阵列形式固定在芯片表面,而特定配体(hIgG 抗原)则在溶液中。这种方法具有普遍适用性,并证明了合理选择敏感区域和 SPRi 数据的标准管理对传感器性能具有重大影响。该方法的标准为:(a)创建 ROI 的高密度图谱,(b)在预分析步骤中评估所有 ROI 上的 SPRi 结合信号,(c)对结果进行 3D 阐述,以及(d)对 ROI 进行排名,以便在进一步的生物传感器分析中进行最终选择。使用抗原的标准溶液,对三种不同的 ROI 选择方法进行了比较,以评估其分析性能。结果表明,所提出的创新方法最适合基于 SPRi 的传感应用。

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