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Magnetic nanoparticle-enhanced surface plasmon resonance biosensor for extracellular vesicle analysis

机译:用于细胞外囊泡分析的磁性纳米粒子增强表面等离子体共振生物传感器

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摘要

The sensitive analysis of small lipid extracellular vesicles (EVs) by using a grating-coupled surface plasmon resonance (GC-SPR) biosensor has been reported. In order to enable the analysis of trace amounts of EVs present in complex liquid samples, the target analyte is pre-concentrated on the sensor surface by using magnetic nanoparticles and its affinity binding is probed by wavelength interrogation of SPR. The GC-SPR has been demonstrated to allow for the implementation of efficient pulling of EVs to the sensor surface by using magnetic nanoparticles and an external magnetic field gradient applied through the sensor chip. This approach overcomes slow diffusion-limited mass transfer and greatly enhances the measured sensor response. The specific detection of different EV populations secreted from mesenchymal stem cells is achieved with a SPR sensor chip modified with antibodies against the surface marker CD81 and magnetic nanoparticles binding the vesicles via annexin V and cholera toxin B chain.
机译:已报道通过使用光栅耦合表面等离子体共振的小脂质囊泡的胞外(EV)用的敏感分析(GC-SPR)生物传感器。为了使电动汽车的本复杂液体样品中的痕量分析,目标分析物是通过使用磁性纳米颗粒和其亲和结合是通过SPR的波长询问探测传感器表面上预浓缩。由GC-SPR已经证明,以允许通过使用磁性纳米颗粒和外部磁场梯度有效牵引电动车到传感器表面的实施通过在传感器芯片上。此方法克服了慢扩散限制的传质和极大地提高了测量的传感器响应。从间充质干细胞分泌的不同EV种群的特异性检测与SPR传感器芯片与针对表面标记CD81和磁性纳米颗粒结合的小泡通过膜联蛋白V和霍乱毒素B链抗体修饰来实现。

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