Functionalized Au@Ag-Au nanoparticles as an optical and SERS dual probe for lateral flow sensing

被引:0
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作者
Tingting Bai
Meng Wang
Min Cao
Juan Zhang
Kangzhen Zhang
Ping Zhou
Zhengxia Liu
Ying Liu
Zhirui Guo
Xiang Lu
机构
[1] Nanjing Medical University,Department of Geriatrics, The Second Affiliated Hospital, Key Laboratory for Aging & Disease
[2] Nantong University,School of Science
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关键词
Lateral flow assay strip; Au nanoparticles; Au-Ag bimetallic nanoparticles; Surface-enhanced Raman scattering;
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摘要
Lateral flow assay strips (LFASs) with Au nanoparticles (NPs) have been widely used as a probe for biomarkers in point-of-care testing; however, there still remain challenges in detection sensitivity and quantitative analysis. In this study, we developed a surface-enhanced Raman scattering (SERS)-based LFAS for quantitative analysis of a biomarker in the low concentration range. Moreover, apart from conventional Au NPs, three other types of citrate-capped Au-Ag bimetallic NPs: Au core with Ag shell NPs (Au@Ag NPs), rattle-like Au core in Ag-Au shell NPs (Au@Ag-Au NPs) and Ag-Au NPs were prepared and functionalized, and their solution-based SERS activities were comprehensively studied by experimental measurement and theoretical analysis. The results clearly indicated that the citrate-capped Au@Ag-Au NPs exhibited the highest SERS activity among the probes tested. Au@Ag-Au NPs were used as both optical and SERS probes in a SERS-based LFAS. In the presence of the analyte at high concentrations, a purple color appeared in the test zone. Highly sensitive and quantitative analysis was realized by measurement of SERS signals from the test lines. One of the most specific markers for cardiac injury, cardiac troponin I (cTnI), was chosen as the detection model. The detection limit of the SERS-based LFAS for cardiac troponin I was 0.09 ng/mL, lowered by nearly 50 times compared with visual results, and could be further lowered by optimization. These results demonstrated that the SERS-based LFAS using citrate-capped Au@Ag-Au NPs as probes can be a powerful tool for highly sensitive and quantitative detection of biomarkers.
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页码:2291 / 2303
页数:12
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