检出限
胶体金
灵敏度(控制系统)
信号(编程语言)
生物分析
化学
纳米技术
放大器
纳米颗粒
材料科学
比色法
色谱法
核蛋白
作者
Supriya Atta,Taylor Thorsen,Yuanhao Zhao,Sebastian Sanchez,Haydon J. Hill,Vanessa Berner,Marcellene A Gates-Hollingsworth,Jasmine Pramila Devadhasan,Alexander J. Summers,Jian Gu,Rabindranath Bag,Sara Haravifard,Douglas C. Montgomery,David P. AuCoin,Frédéric Zenhausern,Tuan Vo-Dinh
标识
DOI:10.1021/acsami.5c21544
摘要
Colorimetric lateral flow immunoassays (LFIA) have revolutionized point-of-care testing (POCT) methods by providing simple, rapid, accessible, and instrumentation-free detection of infectious diseases. However, conventional LFIAs relying on gold nanospheres (GNPs) can suffer from limited sensitivity due to weak colorimetric signal intensity at the test line, restricting their diagnostic potential. To overcome this limitation, we developed a magneto-plasmonics enhanced colorimetric LFIA (mpLFIA)─a breakthrough platform that integrates a novel hybrid nanoparticle system─magnetic gold nanostars (mpGNS). By leveraging dual enhancement mechanisms─magnetic preconcentration and plasmonic amplification through the gold nanostar shell coating of the magnetic core─the mpLFIA achieves unprecedented signal intensity and detection performance. Among the tested mpGNS variants, mpGNS-3─distinguished by its longest spikes and highest branch density─emerged as the most effective colorimetric signal amplifier when evaluated using Rift Valley fever virus (RVFV) nucleoprotein as a model analyte. Our mpLFIA platform achieves an outstanding limit of detection (LOD) of 2.24 pg/mL for RVFV nucleoprotein in 1X PBS buffer, demonstrating a 1000-fold enhancement over conventional GNP-based assays. Our prototype mpLFIA platform, utilizing highly spiked mpGNS-3, exhibits great potential as a powerful bioanalytical tool, combining high sensitivity with practical portability for point-of-care applications.
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