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基于介电超表面的无光谱仪成像光流体生物传感器用于检测细胞外囊泡。

Imaging-based spectrometer-less optofluidic biosensors based on dielectric metasurfaces for detecting extracellular vesicles.

机构信息

Institute of Bioengineering, École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

Department of Biomedical Engineering, University of Wisconsin-Madison, Madison, WI, USA.

出版信息

Nat Commun. 2021 May 31;12(1):3246. doi: 10.1038/s41467-021-23257-y.

Abstract

Biosensors are indispensable tools for public, global, and personalized healthcare as they provide tests that can be used from early disease detection and treatment monitoring to preventing pandemics. We introduce single-wavelength imaging biosensors capable of reconstructing spectral shift information induced by biomarkers dynamically using an advanced data processing technique based on an optimal linear estimator. Our method achieves superior sensitivity without wavelength scanning or spectroscopy instruments. We engineered diatomic dielectric metasurfaces supporting bound states in the continuum that allows high-quality resonances with accessible near-fields by in-plane symmetry breaking. The large-area metasurface chips are configured as microarrays and integrated with microfluidics on an imaging platform for real-time detection of breast cancer extracellular vesicles encompassing exosomes. The optofluidic system has high sensing performance with nearly 70 1/RIU figure-of-merit enabling detection of on average 0.41 nanoparticle/µm and real-time measurements of extracellular vesicles binding from down to 204 femtomolar solutions. Our biosensors provide the robustness of spectrometric approaches while substituting complex instrumentation with a single-wavelength light source and a complementary-metal-oxide-semiconductor camera, paving the way toward miniaturized devices for point-of-care diagnostics.

摘要

生物传感器是公共、全球和个性化医疗保健不可或缺的工具,因为它们提供的测试可以从早期疾病检测和治疗监测到预防大流行。我们引入了单波长成像生物传感器,它可以使用基于最优线性估计器的先进数据处理技术动态重建生物标志物引起的光谱位移信息。我们的方法无需波长扫描或光谱仪器即可实现更高的灵敏度。我们设计了支持连续体中的束缚态的双原子介电超表面,通过面内对称破缺允许具有可访问近场的高质量共振。大面积超表面芯片被配置为微阵列,并与成像平台上的微流控集成,用于实时检测乳腺癌细胞外囊泡,包括外泌体。该光流系统具有近 70 的高传感性能 1/RIU 品质因数,能够检测到平均 0.41 纳米粒子/µm 的浓度,并能实时测量从 204 飞摩尔溶液中结合的细胞外囊泡。我们的生物传感器提供了光谱方法的稳健性,同时用单波长光源和互补金属氧化物半导体相机替代了复杂的仪器,为即时诊断铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cea6/8167130/46f3df46688d/41467_2021_23257_Fig1_HTML.jpg

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