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Exploiting Surface-Plasmon-Enhanced Light Scattering for the Design of Ultrasensitive Biosensing Modality

机译:利用表面等离子体增强光散射设计超灵敏生物传感模式

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摘要

Development of new detection methodologies and amplification schemes is indispensable for plasmonic biosensors to improve the sensitivity for the detection of trace amounts of analytes. Herein, an ultrasensitive scheme for signal enhancement based on the concept of surface-plasmon-resonance-enhanced light scattering (SP-LS) was validated experimentally and theoretically. The SP-LS of gold nanoparticles' (AuNPs) tags was employed in a sandwich assay for the detection of cardiac troponin I and provided up to 2 orders of magnitude improved sensitivity over conventional AuNPs-enhanced refractometric measurements and 3 orders of magnitude improvement over label-free SPR. Simulations were also performed to provide insights into the physical mechanisms.
机译:对于等离激元生物传感器而言,开发新的检测方法和扩增方案必不可少,以提高检测痕量分析物的灵敏度。在本文中,基于表面等离子体共振增强光散射(SP-LS)概念的信号增强超灵敏方案在实验和理论上得到了验证。金纳米颗粒(AuNPs)标签的SP-LS用于三明治测定中的肌钙蛋白I检测,与传统AuNPs增强的折光法测量相比,灵敏度提高了2个数量级,与标签相比提高了3个数量级-无SPR。还进行了仿真以提供对物理机制的见解。

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