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在微型化电化液-液界面中,在 3D 打印支撑物中承载的液滴中检测海洛因。

Heroin detection in a droplet hosted in a 3D printed support at the miniaturized electrified liquid-liquid interface.

机构信息

Electroanalysis and Electrochemistry Group, Department of Inorganic and Analytical Chemistry, Faculty of Chemistry, University of Lodz, Tamka 12, 91-403, Lodz, Poland.

Chemistry Department, Central Forensic Laboratory of the Police, Warsaw, Poland.

出版信息

Sci Rep. 2022 Nov 3;12(1):18615. doi: 10.1038/s41598-022-21689-0.

Abstract

Simple sensing protocols for the detection of illicit drugs are needed. Electrochemical sensing is especially attractive in this respect, as its cost together with the analytical accuracy aspires to replace still frequently used colorimetric tests. In this work, we have shown that the interfacial transfer of protonated heroin can be followed at the electrified water-1,2-dichloroethane interface. We have comprehensively studied the interfacial behavior of heroin alone and in the presence of its major and abundant cutting agents, caffeine and paracetamol. To maximally increase developed sensing protocol applicability we have designed and 3D printed a platform requiring only a few microliters of the aqueous and the organic phase. The proposed sensing platform was equipped with a cavity hosting a short section of Ag/AgCl electrode, up to 20 µL of the aqueous phase and the end of the micropipette tip being used as a casing of a fused silica capillary having 25 µm as the internal pore diameter. The volume of the organic phase was equal to around 5 µL and was present inside the micropipette tip. We have shown that under optimized conditions heroin can be detected in the presence of caffeine and paracetamol existing in a sample with 10,000 times excess over the analyte of interest. The calculated limit of detection equal to 1.3 µM, linear dynamic range spanning to at least 50 µM, good reproducibility, and very low volume of needed sample is fully in line with forensic demands.

摘要

需要简单的传感协议来检测非法药物。在这方面,电化学传感特别有吸引力,因为它的成本和分析精度有望取代仍然经常使用的比色测试。在这项工作中,我们已经表明,可以在带电荷的水-1,2-二氯乙烷界面跟踪质子化海洛因的界面传递。我们全面研究了海洛因单独存在以及在其主要和丰富的切割剂咖啡因和对乙酰氨基酚存在下的界面行为。为了最大限度地提高开发的传感协议的适用性,我们设计并 3D 打印了一个平台,仅需要几微升的水相和有机相。所提出的传感平台配备了一个容纳一小段 Ag/AgCl 电极的腔室,最多可容纳 20 μL 的水相,微吸管尖端的末端用作具有 25 μm 内径的熔融石英毛细管的外壳。有机相的体积约为 5 μL,存在于微吸管尖端内。我们已经表明,在优化条件下,即使在存在 10,000 倍于分析物的咖啡因和对乙酰氨基酚的情况下,也可以检测到海洛因。计算出的检测限等于 1.3 μM,线性动态范围至少扩展到 50 μM,重现性好,所需样品的体积非常低,完全符合法医要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f883/9633610/34fea4b17c24/41598_2022_21689_Fig1_HTML.jpg

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