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基于酶促氧化合成染料的新型髓过氧化物酶检测系统用于基于纸的诊断设备。

New myeloperoxidase detection system based on enzyme-catalysed oxidative synthesis of a dye for paper-based diagnostic devices.

机构信息

Grup de Biotecnologia Molecular i Industrial, Department of Chemical Engineering, Universitat Politècnica de Catalunya, Rambla Sant Nebridi 22, Terrassa 08222, Spain.

Unitat de ferides Complexes, Consorci Sanitari de Terrassa Hospital de Terrassa, Ctra. Torrebonica, s/n, 08227 Terrassa, Barcelona, Spain.

出版信息

Talanta. 2019 Mar 1;194:469-474. doi: 10.1016/j.talanta.2018.10.065. Epub 2018 Oct 21.

Abstract

The severity and cost of wound infections strongly demands for simple and fast methods for wound infection determination. Point-of-care testing devices play a crucial role in order to achieve a fast diagnosis and early treatment. Myeloperoxidase (MPO) enzyme, detected in fluids of infected wounds has been postulated as a suitable biomarker for wound diagnostics. Here we present a new system for MPO detection, based on enzyme-catalysed oxidative synthesis of a dye that can be incorporated into paper-based point of care devices. Visual MPO detection has been achieved through the use of phenylenediamine, a common colourless hair dye precursor. MPO oxidation of these compounds yielded bright coloured products distinguishable from the colour of the wound environment. Immobilisation of the MPO substrates on paper strips was achieved through in situ interaction of the oxidised coloured product with branched polyethyleneimine. The colour reaction of the immobilized substrates, detectable by naked eye, responds to the MPO levels present in infected wound fluids revealing an easy system for incorporation of MPO detection in paper based diagnostic devices.

摘要

伤口感染的严重程度和成本强烈要求采用简单、快速的方法来确定伤口感染。即时检测设备在实现快速诊断和早期治疗方面起着至关重要的作用。髓过氧化物酶(MPO)酶存在于感染伤口的液体中,被认为是伤口诊断的合适生物标志物。在这里,我们提出了一种基于酶促氧化合成染料的 MPO 检测新系统,该染料可被整合到基于纸张的即时检测设备中。通过使用苯二胺(一种常见的无色染发剂前体)实现 MPO 的可视化检测。这些化合物在 MPO 的氧化作用下生成了与伤口环境颜色不同的鲜艳颜色产物。通过氧化产物与支化聚乙烯亚胺的原位相互作用,将 MPO 底物固定在纸条上。通过肉眼可检测到固定化底物的颜色反应,对感染性伤口液中存在的 MPO 水平作出响应,从而为 MPO 检测在基于纸张的诊断设备中的应用提供了一种简便的方法。

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