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基于适配体的侧向流动分析检测小分子:应用适配体-C 反应蛋白交叉识别检测氨苄西林。

Small molecule detection with aptamer based lateral flow assays: Applying aptamer-C-reactive protein cross-recognition for ampicillin detection.

机构信息

Furtwangen University, Institute of Precision Medicine, Jakob-Kienzle-Straße 17, 78054, Villingen-Schwenningen, Germany.

Institute of Pharmaceutical Sciences, University of Freiburg, Albertstraße 25, 79104, Freiburg i. Br., Germany.

出版信息

Sci Rep. 2018 Apr 4;8(1):5628. doi: 10.1038/s41598-018-23963-6.

Abstract

Aptamer-based lateral flow assays (LFAs) are an emerging field of aptamer applications due to numerous potential applications. When compared to antibodies, potential advantages like cost effectiveness or lower batch to batch variations are evident. The development of LFAs for small molecules, however, is still challenging due to several reasons, primarily linked to target size and accessible interaction sites. In small molecule analysis, however, aptamers in many cases are preferable since immunogenicity is not required and they may exhibit even higher target selectivity. We report the first cross-recognition of a small molecule (ampicillin) and a protein (C-reactive protein), predicted by in-silico analysis, then experimentally confirmed - using two different aptamers. These features can be exploited for developing an aptamer-based LFA for label-free ampicillin detection, functioning also for analysis in milk extract. Most importantly, the principal setup denotes a novel, transferable and versatile general approach for detection of small molecules using competitive LFAs, unlikely to be generally realized by aptamer-DNA-binding otherwise.

摘要

基于适配体的侧向流动分析(LFA)是适配体应用的一个新兴领域,因为它具有许多潜在的应用。与抗体相比,成本效益高或批次间变异较小等潜在优势显而易见。然而,由于多种原因,小分子的 LFA 开发仍然具有挑战性,主要与靶标大小和可及的相互作用位点有关。然而,在小分子分析中,适配体在许多情况下更可取,因为不需要免疫原性,并且它们可能表现出更高的靶标选择性。我们报告了第一个小分子(氨苄西林)和蛋白质(C 反应蛋白)的交叉识别,这是通过计算机分析预测的,然后通过实验证实的——使用两种不同的适配体。这些特性可用于开发基于适配体的无标记氨苄西林检测侧向流动分析,也可用于牛奶提取物的分析。最重要的是,主要设置表示了一种新颖、可转移和通用的小分子竞争侧向流动分析检测方法,这是通过其他适配体 - DNA 结合方法不太可能实现的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab91/5884802/ffa3bc558d97/41598_2018_23963_Fig1_HTML.jpg

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