Shin Minsup, Kim Wooyeon, Yoo Kwanghee, Cho Hye-Seong, Jang Sohyeon, Bae Han-Joo, An Jaehyun, Lee Jong-Chan, Chang Hyejin, Kim Dong-Eun, Kim Jaehi, Lee Luke P, Jun Bong-Hyun
Department of Bioscience and Biotechnology, Konkuk University, Seoul, 05029, Republic of Korea.
Company of BioSquare, Hwaseong, 18449, Republic of Korea.
Nano Converg. 2024 Oct 24;11(1):42. doi: 10.1186/s40580-024-00449-y.
Lateral flow assay (LFA) systems use metal nanoparticles for rapid and convenient target detection and are extensively studied for the diagnostics of various diseases. Gold nanoparticles (AuNPs) are often used as probes in LFAs, displaying a single red color. However, there is a high demand for colorimetric LFAs to detect multiple biomarkers, requiring the use of multicolored NPs. Here, we present a highly sensitive multiplexed colorimetric lateral flow immunoassay by multicolored Plasmon-controlled metal-silica Isoform Nanocomposites (PINs). We utilized the localized surface plasmon resonance effect to create multi-colored PINs by precisely adjusting the distance between the NPs on the surface of PINs through the controlled addition of reduced gold and silver precursors. Through simulations, we also confirmed that the distance between nanoparticles on the surface of PINs significantly affects the color and colorimetric signal intensity of the PINs. We achieved multicolored PINs that exhibit stronger colorimetric signals, offering a new solution for LFA detection with high sensitivity and a 33 times reduced limit of detection (LOD) while maintaining consistent size deviations within 5%. We expect that our PINs-based colorimetric LFA will facilitate the sensitive and simultaneous detection of multiple biomarkers in point-of-care testing.
侧向流动分析(LFA)系统使用金属纳米颗粒进行快速便捷的目标检测,并针对各种疾病的诊断进行了广泛研究。金纳米颗粒(AuNPs)常用于LFA中作为探针,呈现单一红色。然而,对比色LFA检测多种生物标志物有很高的需求,这需要使用多色纳米颗粒。在此,我们展示了一种通过多色等离子体控制的金属-二氧化硅异构体纳米复合材料(PINs)实现的高灵敏度多重比色侧向流动免疫分析。我们利用局部表面等离子体共振效应,通过控制添加还原金和银前驱体精确调整PINs表面纳米颗粒之间的距离,从而制备出多色PINs。通过模拟,我们还证实了PINs表面纳米颗粒之间的距离显著影响PINs的颜色和比色信号强度。我们制备出了具有更强比色信号的多色PINs,为LFA检测提供了一种新的解决方案,具有高灵敏度且检测限(LOD)降低了33倍,同时尺寸偏差保持在5%以内。我们期望基于PINs的比色LFA将有助于在即时检测中灵敏且同时地检测多种生物标志物。