适体
微泡
化学
纳米技术
连续流动
纳米花
热的
催化作用
材料科学
小RNA
生物化学
分子生物学
生化工程
物理
生物
工程类
气象学
基因
作者
Nan Cheng,Yang Song,Qiurong Shi,Dan Du,Dong Liu,Yunbo Luo,Wentao Xu,Yuehe Lin
出处
期刊:Analytical Chemistry
[American Chemical Society]
日期:2019-09-05
卷期号:91 (21): 13986-13993
被引量:93
标识
DOI:10.1021/acs.analchem.9b03562
摘要
Conventional lateral flow biosensing technologies face the dual formidable challenges of poor sensitivity and cumbersome quantitative devices. Here, we developed a Au@Pd nanopopcorn and aptamer nanoflower assisted lateral flow strip (ANAN-LFS) with a thermal signal output to improve detection sensitivity. Moreover, a smartphone-based thermal reader was designed and meticulously optimized to hand-held style, realizing the essential portability of this quantitative device. Experimental studies revealed that the synthesized Au@Pd nanopopcorns clearly red-shifted into the near-infrared region, thus resulting in a higher photothermal response than the standard gold nanoparticles. Aptamer nanoflowers enhanced the system's biorecognition ability significantly compared with single-stranded aptamers due to their functional spatial structure, thus resulting in an even greater improvement in the sensitivity of the ANAN-LFS. With exosomes as model targets, the limit of detection (LOD) was calculated to be 1.4 × 104 exosomes/μL, which exhibited a 71-fold improved analytical performance. The feasibility of this system for detecting spiked biological samples at clinical concentrations was also confirmed. These results suggest that the proposed strategy of integrating a ANAN-LFS with a smartphone-based thermal reader has great potential as a powerful tool for bioanalytical applications, offering the combined unique advantages of high sensitivity and expedient portability.
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