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3
Label-free profiling of DNA aptamer-small molecule binding using T5 exonuclease.使用 T5 外切酶进行无标记的 DNA 适体-小分子结合分析。
Nucleic Acids Res. 2020 Nov 18;48(20):e120. doi: 10.1093/nar/gkaa849.
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适配体集成多分析物检测纸电化学器件。

Aptamer-Integrated Multianalyte-Detecting Paper Electrochemical Device.

机构信息

Department of Chemistry and Biochemistry, Florida International University, 11200 SW Eighth Street, Miami, Florida 33199, United States.

出版信息

ACS Appl Mater Interfaces. 2021 Apr 21;13(15):17330-17339. doi: 10.1021/acsami.1c01822. Epub 2021 Apr 7.

DOI:10.1021/acsami.1c01822
PMID:33826286
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8063423/
Abstract

On-site detection of multiple small-molecule analytes in complex sample matrixes would be highly valuable for diverse biosensing applications. Paper electrochemical devices (PEDs) offer an especially appealing sensing platform for such applications due to their low cost, portability, and ease of use. Using oligonucleotide-based aptamers as biorecognition elements, we here for the first time have developed a simple, inexpensive procedure for the fabrication of aptamer-modified multiplex PEDs (mPEDs), which can robustly and specifically detect multiple small molecules in complex samples. These devices are prepared via an ambient vacuum filtration technique using carbon and metal nanomaterials that yields precisely patterned sensing architecture featuring a silver pseudo-reference electrode, a gold counter electrode, and three gold working electrodes. The devices are user-friendly, and the fabrication procedure is highly reproducible. Each working electrode can be readily modified with different aptamers for sensitive and accurate detection of multiple small-molecule analytes in a single sample within seconds. We further demonstrate that the addition of a PDMS chamber allows us to achieve detection in microliter volumes of biological samples. We believe this approach should be highly generalizable, and given the rapid development of small-molecule aptamers, we envision that facile on-site multi-analyte detection of diverse targets in a drop of sample should be readily achievable in the near future.

摘要

现场检测复杂样本基质中的多种小分子分析物对于各种生物传感应用将具有非常高的价值。纸电化学器件(PED)因其低成本、便携性和易用性,成为此类应用的一种特别有吸引力的传感平台。我们首次使用基于寡核苷酸的适体作为生物识别元件,开发了一种简单、廉价的方法来制备适体修饰的多重 PED(mPED),该方法可以在复杂样品中稳健且特异性地检测多种小分子。这些器件是通过使用碳和金属纳米材料在环境真空过滤技术制备的,可精确地形成具有银伪参比电极、金对电极和三个金工作电极的传感结构。该器件使用方便,且制备过程具有高度重现性。每个工作电极都可以轻松地用不同的适体进行修饰,以便在数秒内对单个样品中的多种小分子分析物进行灵敏和准确的检测。我们进一步证明,添加 PDMS 腔室可使我们能够实现微升体积的生物样品检测。我们相信这种方法具有很高的通用性,并且鉴于小分子适体的快速发展,我们设想在不久的将来,应该可以轻松地在样品的一滴中实现各种目标的现场多分析物检测。