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Core/shell nanoparticles for multiple biological detection with enhanced sensitivity and kinetics

机译:核/壳纳米颗粒,用于多种生物检测,具有增强的灵敏度和动力学

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摘要

The paper shows the different methods to attach a molecule to detect streptavidin to a dielectric particle made of a rare-earth oxide core and a polysiloxane shell containing fluorescein. First, the detection of streptavidin binding on a biotinylated gold substrate can be achieved in three ways: the shift of the surface plasmon resonance of the substrate and the double luminescence (organic and inorganic) of the core/shell particle. Second, these detections are efficient even after elimination upon thermal annealing of all the undesired molecules that skew the assays. Finally, the particle that ballasts the protein enhances its binding kinetics and increases the localized surface plasmon resonance shift that detects the binding.
机译:本文显示了将分子检测链霉亲和素的分子附着到由稀土氧化物核和含有荧光素的聚硅氧烷壳制成的介电粒子上的不同方法。首先,可以通过三种方式检测链霉亲和素在生物素化金基质上的结合:基质表面等离振子共振的位移和核/壳颗粒的双重发光(有机和无机)。其次,即使在对所有不希望的分子进行热退火消除后,这些检测也是有效的。最后,将蛋白质压载的粒子增强了其结合动力学,并增加了检测结合的局部表面等离子体共振变化。

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