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用于检测肺癌细胞的电磁诱导透明样超材料

Electromagnetically induced transparency-like metamaterials for detection of lung cancer cells.

作者信息

Yang Maosheng, Liang Lanju, Zhang Zhang, Xin Yan, Wei Dequan, Song Xiaoxian, Zhang Haiting, Lu YuYing, Wang Meng, Zhang Mengjin, Wang Tao, Yao Jianquan

出版信息

Opt Express. 2019 Jul 8;27(14):19520-19529. doi: 10.1364/OE.27.019520.

Abstract

A biosensor based on electromagnetically induced transparent (EIT) metamaterials (MMs) is proposed owing to the low loss and high Q-factor. The theoretical sensitivity of the biosensor based on EIT-like MMs were evaluated up to 248.8 GHz/RIU (RIU, Refractive Index Unit). In experiments, the cancer cells A549, as an analyte, are cultured on EIT-like MMs surface. The results show that when the cell concentration increases from 0.5 × 10 to 5 × 10 cells/ml, the frequency shift Δf could change from 24 to 50 GHz. Moreover, the coupled oscillators model is applied to explain the effect of the refractive index of analyte in simulations and the cell concentration in experiments on the EIT-like MMs. The fitting results exhibit that the refractive index of analyte and cell concentration significantly affect the radiative damping of the bright mode resonator γ. The proposed EIT-like MMs biosensors show great potentials for cell measurement because any change that results in the lineshape variation in EIT-like MMs can only be attributed to the change of external dielectric environment due to the suppression of radiative losses.

摘要

基于电磁诱导透明(EIT)超材料(MMs)的生物传感器因其低损耗和高品质因数而被提出。基于类EIT超材料的生物传感器的理论灵敏度评估高达248.8 GHz/RIU(RIU,折射率单位)。在实验中,将癌细胞A549作为分析物培养在类EIT超材料表面。结果表明,当细胞浓度从0.5×10增加到5×10个细胞/毫升时,频率偏移Δf可从24 GHz变化到50 GHz。此外,耦合振荡器模型被用于解释模拟中分析物折射率和实验中细胞浓度对类EIT超材料的影响。拟合结果表明,分析物的折射率和细胞浓度显著影响亮模谐振器γ的辐射阻尼。所提出的类EIT超材料生物传感器在细胞测量方面显示出巨大潜力,因为由于辐射损耗的抑制,导致类EIT超材料线形变化的任何变化都只能归因于外部介电环境的变化。

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