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On-Chip Immunoassay Using Surface-Enhanced Raman Scattering of Hollow Gold Nanospheres

机译:空心金纳米球表面增强拉曼散射的片上免疫测定

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摘要

A surface-enhanced Raman scattering (SERS)-based gradient optofluidic sensor has been developed for a fast and sensitive immunoassay. In this work, a novel microfluidic sensor with functional internal structures has been designed and fabricated. This sensor is composed of three compartments consisting of the gradient channel that serially dilutes the target marker, the injection and mixing area of antibody-conjugated hollow gold nanospheres and magnetic beads, and the trapping area of sandwich immunocomplexes using multiple solenoids. Quantitative analysis of a specific target marker is performed by analyzing its characteristic SERS signals. This SERS-based gradient optofluidic sensor can replace the set of microwells or microtubes used in manual serial dilutions that have been traditionally used in enzyme-linked immunosorbent assay (ELISA)-type assays. The limit of detection for rabbit immunoglobin (IgG) is estimated to be 1-10 ng/mL. This novel SERS-based optofluidic immunoassay system is expected to be a powerful clinical tool for the fast and sensitive medical diagnosis of a disease.
机译:基于表面增强拉曼散射(SERS)的梯度光电传感器已经开发出来,用于快速灵敏的免疫测定。在这项工作中,已经设计和制造了一种具有功能内部结构的新型微流体传感器。该传感器由三个部分组成,这些部分由依次稀释目标标记物的梯度通道,抗体结合的空心金纳米球和磁珠的注入和混合区域以及使用多个螺线管的夹心免疫复合物的捕获区域组成。通过分析特定目标标记的特征SERS信号进行定量分析。这种基于SERS的梯度光电传感器可以代替手动连续稀释液中使用的微孔或微管组,这些稀释液在传统上已用于酶联免疫吸附测定(ELISA)型测定中。兔免疫球蛋白(IgG)的检出限估计为1-10 ng / mL。这种基于SERS的新型光流体免疫测定系统有望成为一种快速,灵敏的疾病医学诊断的强大临床工具。

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