Institute of Nanostructured Materials (ISMN) - National Research Council (CNR), Via P. Gobetti 101, Bologna, 40129, Italy.
Fraunhofer FEP, Winterbergstraße 28, 01277, Dresden, Germany.
Adv Mater. 2023 Jun;35(26):e2208719. doi: 10.1002/adma.202208719. Epub 2023 May 5.
Optical biosensors based on plasmonic sensing schemes combine high sensitivity and selectivity with label-free detection. However, the use of bulky optical components is still hampering the possibility of obtaining miniaturized systems required for analysis in real settings. Here, a fully miniaturized optical biosensor prototype based on plasmonic detection is demonstrated, which enables fast and multiplex sensing of analytes with high- and low molecular weight (80 000 and 582 Da) as quality and safety parameters for milk: a protein (lactoferrin) and an antibiotic (streptomycin). The optical sensor is based on the smart integration of: i) miniaturized organic optoelectronic devices used as light-emitting and light-sensing elements and ii) a functionalized nanostructured plasmonic grating for highly sensitive and specific localized surface plasmon resonance (SPR) detection. The sensor provides quantitative and linear response reaching a limit of detection of 10 refractive index units once it is calibrated by standard solutions. Analyte-specific and rapid (15 min long) immunoassay-based detection is demonstrated for both targets. By using a custom algorithm based on principal-component analysis, a linear dose-response curve is constructed which correlates with a limit of detection (LOD) as low as 3.7 µg mL for lactoferrin, thus assessing that the miniaturized optical biosensor is well-aligned with the chosen reference benchtop SPR method.
基于等离子体传感方案的光学生物传感器结合了高灵敏度和选择性与无标记检测。然而,庞大的光学元件的使用仍然阻碍了获得用于实际环境分析的小型化系统的可能性。在这里,展示了一种基于等离子体检测的全微型光学生物传感器原型,它能够快速和多重感应具有高分子量(80000)和低分子量(582 Da)的分析物,作为牛奶的质量和安全参数:一种蛋白质(乳铁蛋白)和一种抗生素(链霉素)。该光学传感器基于以下智能集成:i)微型有机光电设备,用作发光和光感测元件,以及 ii)功能化的纳米结构等离子体光栅,用于高度敏感和特定的局域表面等离子体共振(SPR)检测。该传感器通过标准溶液进行校准后,提供定量和线性响应,达到 10 折射率单位的检测限。针对这两种目标物都进行了基于免疫测定的特定于分析物的快速(15 分钟)检测。通过使用基于主成分分析的自定义算法,构建了一条线性剂量-响应曲线,与乳铁蛋白的检测限(LOD)低至 3.7µg mL 相关,从而评估微型光学生物传感器与所选台式 SPR 方法非常吻合。