生物传感器
微流控
分光计
纳米技术
材料科学
胞外囊泡
细胞外小泡
实验室晶片
光电子学
光学
计算机科学
微泡
物理
化学
生物
细胞生物学
小RNA
基因
生物化学
作者
Yasaman Jahani,Eduardo Arvelo,Filiz Yesilköy,Kirill Koshelev,Chiara Cianciaruso,Michele De Palma,Yuri S. Kivshar,Hatice Altug
标识
DOI:10.1038/s41467-021-23257-y
摘要
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 2 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.
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