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亚皮摩尔浓度下的超灵敏分子检测:等离子超表面和凸面全息光栅的衍射模式成像。

Ultrasensitive Molecular Detection at Subpicomolar Concentrations by the Diffraction Pattern Imaging with Plasmonic Metasurfaces and Convex Holographic Gratings.

机构信息

School of Biomedical Engineering, Sun Yat-sen University, Guangzhou, 510275, China.

出版信息

Adv Sci (Weinh). 2022 Aug;9(22):e2201682. doi: 10.1002/advs.202201682. Epub 2022 May 26.

Abstract

Compact and cost-effective optical devices for highly sensitive detection of trace molecules are significant in many applications, including healthcare, pollutant monitoring and explosive detection. Nanophotonic metasurface-based sensors have been intensively attracting attentions for molecular detection. However, conventional methods often involve spectroscopic characterizations that require bulky, expensive and sophisticated spectrometers. Here, a novel ultrasensitive sensor of plasmonic metasurfaces is designed and fabricated for the detection of trace molecules. The sensor features a convex holographic grating, of which the first-order diffraction pattern of a disposable metasurface is recorded by a monochrome camera.The diffraction pattern changes with the molecules attached to the metasurface, realizing label-free and spectrometer-free molecular detection by imaging and analyzing of the diffraction pattern. By integrating the sensor with a microfluidic setup, the quantitative characterization of rabbit anti-human Immunoglobulin G (IgG) and human IgG biomolecular interactions is demonstrated with an excellent limit of detection (LOD) of 0.6 pm. Moreover, both the metasurface and holographic grating are obtained through vacuum-free solution-processed fabrications, minimizing the manufacturing cost of the sensor. A prototype of the imaging-based sensor, consisting of a white light-emitting diode (LED) and a consumer-level imaging sensor is achieved to demonstrate the potential for on-site detection.

摘要

用于痕量分子高灵敏度检测的紧凑型、经济高效型光学器件在许多应用中都具有重要意义,包括医疗保健、污染物监测和爆炸物检测。基于纳米光子学超表面的传感器在分子检测方面受到了广泛关注。然而,传统方法通常涉及光谱特性分析,需要使用体积庞大、昂贵且复杂的光谱仪。在这里,我们设计并制造了一种基于等离子体超表面的新型超灵敏传感器,用于痕量分子的检测。该传感器具有一个凸面全息光栅,其一次性超表面的一阶衍射图案由单色相机记录。随着附着在超表面上的分子的变化,衍射图案也会发生变化,从而实现无标记和无光谱仪的分子检测,通过对衍射图案的成像和分析来实现。通过将传感器与微流控装置集成,我们演示了对兔抗人免疫球蛋白 G(IgG)和人 IgG 生物分子相互作用的定量表征,具有出色的检测限(LOD)为 0.6 pm。此外,超表面和全息光栅都是通过无真空溶液处理制造获得的,最大限度地降低了传感器的制造成本。我们还实现了基于成像的传感器的原型,该原型由一个白光发光二极管(LED)和一个消费级成像传感器组成,以展示现场检测的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99de/9353501/69ff9c1df621/ADVS-9-2201682-g005.jpg

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