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用于检测神经毒剂的完全集成即用型纸质电化学生物传感器。

Fully integrated ready-to-use paper-based electrochemical biosensor to detect nerve agents.

机构信息

Department of Chemical Sciences and Technologies, University of Rome "Tor Vergata", Via della Ricerca Scientifica, 00133 Rome, Italy.

Department of Chemical Sciences and Technologies, University of Rome "Tor Vergata", Via della Ricerca Scientifica, 00133 Rome, Italy.

出版信息

Biosens Bioelectron. 2017 Jul 15;93:46-51. doi: 10.1016/j.bios.2016.10.091. Epub 2016 Nov 1.

Abstract

Paper-based microfluidic devices are gaining large popularity because of their uncontested advantages of simplicity, cost-effectiveness, limited necessity of laboratory infrastructure and skilled personnel. Moreover, these devices require only small volumes of reagents and samples, provide rapid analysis, and are portable and disposable. Their combination with electrochemical detection offers additional benefits of high sensitivity, selectivity, simplicity of instrumentation, portability, and low cost of the total system. Herein, we present the first example of an integrated paper-based screen-printed electrochemical biosensor device able to quantify nerve agents. The principle of this approach is based on dual electrochemical measurements, in parallel, of butyrylcholinesterase (BChE) enzyme activity towards butyrylthiocholine with and without exposure to contaminated samples. The sensitivity of this device is largely improved using a carbon black/Prussian Blue nanocomposite as a working electrode modifier. The proposed device allows an entirely reagent-free analysis. A strip of a nitrocellulose membrane, that contains the substrate, is integrated with a paper-based test area that holds a screen-printed electrode and BChE. Paraoxon, chosen as nerve agent simulant, is linearly detected down to 3µg/L. The use of extremely affordable manufacturing techniques provides a rapid, sensitive, reproducible, and inexpensive tool for in situ assessment of nerve agent contamination. This represents a powerful approach for use by non-specialists, that can be easily broadened to other (bio)systems.

摘要

基于纸的微流控设备因其具有无可争议的优势而受到广泛关注,包括简单、经济高效、对实验室基础设施和熟练人员的需求有限。此外,这些设备仅需要少量的试剂和样本,提供快速分析,并且便携且一次性使用。将它们与电化学检测相结合,提供了更高的灵敏度、选择性、仪器简单性、便携性和总成本低廉的附加优势。在此,我们展示了第一个能够定量神经毒剂的集成基于纸的丝网印刷电化学生物传感器设备的示例。这种方法的原理基于同时对含有和不含有污染样品的丁酰硫代胆碱进行双电化学测量的酶活性,对丁酰胆碱酯酶(BChE)的测量。使用碳黑/普鲁士蓝纳米复合材料作为工作电极修饰剂,大大提高了该设备的灵敏度。该设备允许进行完全无试剂的分析。包含底物的硝酸纤维素膜条与含有丝网印刷电极和 BChE 的基于纸的测试区域集成在一起。选择作为神经毒剂模拟物的对氧磷,在 3µg/L 以下呈线性检测。采用极其经济实惠的制造技术,提供了一种快速、灵敏、可重复和廉价的现场评估神经毒剂污染的工具。这代表了非专业人员的强大方法,并且可以轻松扩展到其他(生物)系统。

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