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用于检测街头毒品“Tranq”的抗污伏安法赛拉嗪传感器

Fouling-Resistant Voltammetric Xylazine Sensors for Detection of the Street Drug "Tranq".

作者信息

Stern Joyce E, Wemple Ann H, Sheppard Charles W, Vinnikov Arielle, Leopold Michael C

机构信息

Department of Chemistry, Gottwald Center for the Sciences, University of Richmond, Richmond, VA 23173, USA.

出版信息

Toxics. 2024 Oct 30;12(11):791. doi: 10.3390/toxics12110791.

Abstract

As the opioid crisis continues to wreak havoc on a global scale, it is increasingly critical to develop methodologies to detect the most dangerous drugs such as fentanyl and its derivatives, which have orders of magnitude higher potency than morphine. The scientific challenge for chemical detection of fentanyl and its derivatives is complicated by both the constantly increasing synthetic variations of the drug as well as the expanded use of adulterants. One tragically consequential example is the nocuous street drug known as "Tranq", which combines fentanyl or a fentanyl derivative with the veterinary sedative Rompun, chemically identified as xylazine (XYL). This pervasive street cocktail is exacerbating the already staggering number of fentanyl-related deaths as its acute toxicity poses a danger to medical first-responders and complicates their initial assessment and treatment options for overdose victims. Given the widespread use of XYL as an adulterant, an electrochemical XYL sensor capable of on-site operation by non-experts as a fast-screening tool is a notable goal. This work presents a voltammetry-based sensor featuring carbon electrodes modified with carboxylic-acid functionalized multi-walled carbon nanotubes layered with cyclodextrin and polyurethane membranes for sensitivity and selectivity enhancements. The sensor has critical and robust fouling resistance while providing sensitivity at 950 μA/mM∙cm, a low limit of detection (~5 ppm), and the ability to detect XYL in the presence of fentanyl and/or other non-fentanyl stimulants like cocaine. The demonstrated sensor can be applied to promote public health with its ability to detect and indicate XYL in the presence of opioids, serving to protect drug-users, first responders, medical examiners, and on-site forensic investigators from exposure to these dangerous mixtures.

摘要

随着阿片类药物危机在全球范围内持续肆虐,开发检测芬太尼及其衍生物等最危险药物的方法变得越来越重要,这些药物的效力比吗啡高出几个数量级。芬太尼及其衍生物的化学检测面临着科学挑战,因为药物的合成变体不断增加,同时掺假物的使用也在扩大。一个具有悲惨后果的例子是一种名为“Tranq”的有害街头毒品,它将芬太尼或芬太尼衍生物与兽用镇静剂隆朋(化学名为赛拉嗪,XYL)混合。这种普遍存在的街头混合物正在加剧已经惊人的与芬太尼相关的死亡人数,因为其急性毒性对医疗急救人员构成危险,并使他们对过量用药受害者的初步评估和治疗选择变得复杂。鉴于赛拉嗪作为掺假物的广泛使用,开发一种能够由非专业人员现场操作的电化学赛拉嗪传感器作为快速筛查工具是一个值得关注的目标。这项工作展示了一种基于伏安法的传感器,其碳电极用羧酸功能化的多壁碳纳米管修饰,并层叠有环糊精和聚氨酯膜,以提高灵敏度和选择性。该传感器具有关键且强大的抗污染能力,同时灵敏度为950 μA/mM∙cm²,检测下限低(约5 ppm),并且能够在存在芬太尼和/或其他非芬太尼兴奋剂(如可卡因)的情况下检测赛拉嗪。所展示的传感器能够在存在阿片类药物的情况下检测并指示赛拉嗪,可用于促进公共卫生,保护吸毒者、急救人员、法医和现场法医调查人员免受这些危险混合物的侵害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95fb/11598047/0d54d768cbda/toxics-12-00791-g001.jpg

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