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Long range surface plasmon resonance bacterial pathogen biosensor with magnetic nanoparticle assay

机译:磁性纳米粒子的远程表面等离子体共振细菌病原体生物传感器

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In this paper, long range surface plasmons (LRSP) and magnetic iron oxide nanoparticle (MNP) immunoassay are investigated for advancing the sensitivity of surface plasmon resonance (SPR) biosensor technology for the analysis of bacterial pathogens. The MNPs-antibody conjugates served as labels for enhancing the binding-induced refractive index changes and as “vehicles” for rapid delivery of bacteria from a sample solution to the sensor surface by applied magnetic field. A sensor chip for diffraction-coupled long range surface plasmon resonance (LRSPR) was developed and functionalized with capture antibodies. These surface plasmon waves enable improving the resolution of refractive index changes measurements on the surface and probing whole volume of captured bacterial pathogens. The combined LRSPR and MNP assay was applied for detection of Escherichia coli O157:H7. About 3 orders of magnitude improvement of the sensitivity with respect to regular SPR and the analysis time of ∼30 min are demonstrated.
机译:为了提高表面等离振子共振(SPR)生物传感器技术对细菌病原体分析的灵敏度,研究了远程表面等离激元(LRSP)和磁性氧化铁纳米粒子(MNP)免疫测定。 MNPs-抗体缀合物充当标记物,以增强结合诱导的折射率变化,并充当“媒介物”,以通过施加磁场将细菌从样品溶液快速递送到传感器表面。开发了用于衍射耦合远距离表面等离子体共振(LRSPR)的传感器芯片,并使用捕获抗体对其进行了功能化。这些表面等离激元波可以提高表面上折射率变化测量的分辨率,并探测捕获的细菌病原体的全部体积。结合使用LRSPR和MNP分析检测大肠杆菌O157:H7。与常规SPR相比,灵敏度提高了约3个数量级,分析时间约为30分钟。

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