生物传感器
材料科学
检出限
纳米棒
表面等离子共振
癌胚抗原
胶体金
折射率
分析物
等离子体子
超材料
纳米颗粒
表面增强拉曼光谱
光电子学
纳米技术
光学
拉曼光谱
化学
色谱法
拉曼散射
物理
内科学
癌症
医学
作者
Huimin Wang,Jintao Cai,Tao Wang,Ruoqin Yan,Ming Shen,Jinyan Zhang,Xinzhao Yue,Lu Wang,Xuyang Yuan,Enze Lv,Jinwei Zeng,Xuewen Shu,Jian Wang
标识
DOI:10.1016/j.bios.2024.116295
摘要
Hyperbolic metamaterial (HMM) biosensors based on metals have superior performance in comparison with conventional plasmonic biosensors in the detection of low concentrations of molecules. In this study, a nanorod HMM (NHMM) biosensor based on refractive index changes for carcinoembryonic antigen (CEA) detection is developed using secondary antibody modified gold nanoparticle (AuNP-Ab2) nanocomposites as signal amplification element for the first time. Numerical analysis based on finite element method is conducted to simulate the perturbation of the electric field of bulk plasmon polariton (BPP) supported by a NHMM in the presence of a AuNP. The simulation reveals an enhancement of the localized electric field, which arises from the resonant coupling of BPP to the localized surface plasmon resonance supported by AuNPs and is beneficial for the detection of changes of the refractive index. Furthermore, the AuNP-Ab2 nanocomposites-based NHMM (AuNP/Ab2-NHMM) biosensor enables CEA detection in the visible and near-infrared regions simultaneously. The highly sensitive detection of CEA with a wide linear range of 1 - 500 ng/mL is achieved in the near-infrared region. The detectable concentration of the AuNP/Ab2-NHMM biosensor has a 50-fold decrease in comparison with a NHMM biosensor. A low detection limit of 0.25 ng/mL (1.25 pM) is estimated when considering a noise level of 0.05 nm as the minimum detectable wavelength shift. The proposed method achieves high sensitivity and good reproducibility for CEA detection, which makes it a novel and viable approach for biomedical research and early clinical diagnostics.
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