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纸质微流控分析器件(µPAD)在法医和临床毒理学中的应用:综述。

Application of Paper-Based Microfluidic Analytical Devices (µPAD) in Forensic and Clinical Toxicology: A Review.

机构信息

Unit of Forensic Medicine, Department of Diagnostics and Public Health, University of Verona, P.le Scuro 10, 37134 Verona, Italy.

Department of Agrifood, Environmental and Animal Science, University of Udine, Via Cotonificio 108, 33100 Udine, Italy.

出版信息

Biosensors (Basel). 2023 Jul 18;13(7):743. doi: 10.3390/bios13070743.

Abstract

The need for providing rapid and, possibly, on-the-spot analytical results in the case of intoxication has prompted researchers to develop rapid, sensitive, and cost-effective methods and analytical devices suitable for use in nonspecialized laboratories and at the point of need (PON). In recent years, the technology of paper-based microfluidic analytical devices (μPADs) has undergone rapid development and now provides a feasible, low-cost alternative to traditional rapid tests for detecting harmful compounds. In fact, µPADs have been developed to detect toxic molecules (arsenic, cyanide, ethanol, and nitrite), drugs, and drugs of abuse (benzodiazepines, cathinones, cocaine, fentanyl, ketamine, MDMA, morphine, synthetic cannabinoids, tetrahydrocannabinol, and xylazine), and also psychoactive substances used for drug-facilitated crimes (flunitrazepam, gamma-hydroxybutyric acid (GHB), ketamine, metamizole, midazolam, and scopolamine). The present report critically evaluates the recent developments in paper-based devices, particularly in detection methods, and how these new analytical tools have been tested in forensic and clinical toxicology, also including future perspectives on their application, such as multisensing paper-based devices, microfluidic paper-based separation, and wearable paper-based sensors.

摘要

由于需要在中毒情况下提供快速且可能即时的分析结果,促使研究人员开发出适用于非专业实验室和现场需求 (PON) 的快速、灵敏且具有成本效益的方法和分析设备。近年来,纸基微流控分析器件 (μPAD) 技术发展迅速,为传统快速检测有害化合物提供了一种可行的低成本替代方案。事实上,µPAD 已被开发用于检测有毒分子(砷、氰化物、乙醇和亚硝酸盐)、药物和滥用药物(苯并二氮䓬类、卡西酮、可卡因、芬太尼、氯胺酮、MDMA、吗啡、合成大麻素、四氢大麻酚和唑吡坦),以及用于药物辅助犯罪的精神活性物质(氟硝西泮、γ-羟基丁酸 (GHB)、氯胺酮、甲灭酸、咪达唑仑和东莨菪碱)。本报告批判性地评估了纸基器件,特别是检测方法方面的最新进展,以及这些新的分析工具如何在法医和临床毒理学中进行测试,还包括对其应用的未来展望,如多传感纸基器件、微流控纸基分离和可穿戴纸基传感器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acdf/10377625/1268aaf1cee2/biosensors-13-00743-g001.jpg

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