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Magnetic Nanoparticle-Enhanced Biosensor Based on Grating-Coupled Surface Plasmon Resonance

机译:基于光栅耦合表面等离子体共振的磁性纳米增强生物传感器

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摘要

A highly sensitive surface plasmon resonance (SPR) biosensor employing magnetic nanoparticle (MNP) assays is presented. In the reported approach, MNPs simultaneously served as "vehicles" for rapid delivery of target analyte from a sample to the sensor surface and as labels increasing the measured refractive index changes that are associated with the binding of target analyte. An optical setup based on grating-coupled surface plasmon resonance (GC-SPR) was used with a magnetic field gradient applied through the sensor chip for manipulating with MNPs on its surface. Iron oxide MNPs and a sensor surface with metallic diffraction grating were modified with antibodies that specifically recognize different epitopes of the analyte of interest. The sensitivity of the biosensor was investigated as a function of mass transport of the analyte to the sensor surface driven by diffusion (free analyte) or by the magnetic field gradient (analyte bound to MNPs). Immunoassay-based detection of beta human chorionic gonadotropin ((beta)hCG) was implemented to evaluate the sensitivity of the MNP-enhanced GC-SPR biosensor scheme. The results reveal that the sensitivity of (beta)hCG detection was improved by 4 orders of magnitude compared with the regular SPR sensor with direct detection format, and a limit of detection below pM was achieved.
机译:提出了使用磁性纳米粒子(MNP)分析的高度敏感的表面等离子体共振(SPR)生物传感器。在报道的方法中,MNP同时用作“载体”,用于将目标分析物从样品快速递送到传感器表面,并作为标记物增加与目标分析物结合相关的测得的折射率变化。使用基于光栅耦合表面等离子体激元共振(GC-SPR)的光学装置,并通过传感器芯片施加磁场梯度,以在其表面上操纵MNP。用特异性识别目标分析物不同表位的抗体修饰了氧化铁MNP和带有金属衍射光栅的传感器表面。根据扩散(游离分析物)或磁场梯度(与MNP结合的分析物)驱动的分析物向传感器表面的质量传输功能,研究了生物传感器的灵敏度。基于免疫测定的β人绒毛膜促性腺激素(βhCG)检测用于评估MNP增强型GC-SPR生物传感器方案的敏感性。结果表明,与具有直接检测格式的常规SPR传感器相比,βhCG检测的灵敏度提高了4个数量级,并且达到了低于pM的检测极限。

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