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基于适配体功能化纳米金颗粒色素的侧向流动免疫层析试纸条用于微污染物筛查的研究 第一部分 方法与优化

Development of Lateral Flow Immunochromatographic Strips for Micropollutants Screening Using Colorants of Aptamer Functionalized Nanogold Particles Part I Methodology and Optimization.

作者信息

Zhao Shuai, Zhang Shan, Wang Sai, Liu Jiahui, Dong Yiyang

机构信息

Beijing University of Chemical Technology, College of Life Science and Technology, Beijing 100029, People's Republic of China.

Ocean University of China, College of Food Science and Engineering, Lab of Nucleic Acid Chemistry and Biotechnology, Qingdao 266003, China.

出版信息

J AOAC Int. 2018 Sep 1;101(5):1402-1407. doi: 10.5740/jaoacint.18-0055. Epub 2018 May 3.

Abstract

A methodology of lateral flow immunochromatographic strip based on aptamer was developed for on-site detection of the small molecule micropollutants. In the present study, we try for the first time to investigate the feasibility of developing a strip assay for the analysis of micropollutants as methodological prototypes by combining the high selectivity and affinity of aptamers with the unique optical properties of nanogolds. This quantitative method was based on the competition for the aptamer between targets and DNA probes. Crucial parameters that might influence the sensitivity, such as the size of nanogolds, amount of aptamer, type and pH of streptavidin, type of nitrocellulose (NC) membrane, blocking procedure, and reading time, were systematically investigated to obtain the optimum assay performance. With the optimized conditions [nanogolds 25 nm, 50 μM aptamer, pH 8 of GSA (a type of streptavidin named "SA Gold," which is a sulfhydrylization streptavidin), Millipore HFC 135 NC membrane, 1% bovine serum albumin as the blocking agent and added in the running buffer and sample pad soakage agents, and 20 min reading time] the aptamer-based lateral flow assay will show a low visual limit of detection and scanning reader LOD. The strip for on-site screening using colorants of aptamer functionalized nanogold particles did not require any complicated equipment and was a potential portable tool for rapid identification of micropollutants.

摘要

开发了一种基于适体的侧向流动免疫色谱条带方法,用于现场检测小分子微污染物。在本研究中,我们首次尝试通过将适体的高选择性和亲和力与纳米金的独特光学特性相结合,探讨开发一种用于分析微污染物的条带检测方法作为方法学原型的可行性。这种定量方法基于靶标与DNA探针之间对适体的竞争。系统研究了可能影响灵敏度的关键参数,如纳米金的尺寸、适体的量、链霉亲和素的类型和pH值、硝酸纤维素(NC)膜的类型、封闭程序和读取时间,以获得最佳检测性能。在优化条件下(25 nm纳米金、50 μM适体、GSA(一种名为“SA Gold”的链霉亲和素,即巯基化链霉亲和素)pH 8、Millipore HFC 135 NC膜、1%牛血清白蛋白作为封闭剂并添加到运行缓冲液和样品垫浸润剂中、读取时间20分钟),基于适体的侧向流动检测将显示出较低的目视检测限和扫描读数器检测限。使用适体功能化纳米金颗粒着色剂进行现场筛查的条带不需要任何复杂设备,是一种用于快速识别微污染物的潜在便携式工具。

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