Leopold Michael C, Sheppard Charles W, Stern Joyce E, Vinnikov Arielle, Wemple Ann H, Edelman Ben H
Department of Chemistry, Gottwald Center for the Sciences, University of Richmond, Richmond, VA 23173, USA.
Sensors (Basel). 2025 Aug 26;25(17):5312. doi: 10.3390/s25175312.
Xylazine (XYL), an FDA-approved veterinary tranquilizer, is being abused both as an opioid adulterant in a street-drug known as "Tranq-dope" and as a date rape drug. Given its now nearly ubiquitous use with fentanyl and fentanyl derivatives across the globe, XYL has become a primary target for researchers seeking to develop portable and cost-effective sensors for its detection. Electrochemical sensors based on the oxidation of XYL, while useful, have limitations due to certain interferents and inherent electrode fouling that render the approach less reliable, especially in certain sample matrices. In this work, modified electrode platforms incorporating layers of multi-walled carbon nanotubes for sensitivity along with semi-permeable polyurethane (PU) layers and host-guest chemistry using β-cyclodextrin for selectivity are deployed for XYL detection using complementary adsorptive cathodic stripping analysis. The modified electrode sensors are optimized to minimize high potentials and maintain fouling resistant capabilities and investigated to better understand the function of the PU layer. The use of adsorptive cathodic stripping differential pulse voltammetry indirectly indicates the presence and concentration of XYL within complex sample media (beverages and synthetic urine). When used in this manner, the modified electrodes exhibited an overall average sensitivity of ~35 (±9) nA/μM toward XYL with a limit of quantification of <10 ppm, while also offering adaptability for the analysis of XYL in different types of samples. By expanding the capability of these XYL sensors, this study represents another facet of tool development for use by medical professionals, first-responders, forensic investigators, and drug-users to limit exposure and help stem the dangerous and illegal use of XYL.
赛拉嗪(XYL)是一种经美国食品药品监督管理局(FDA)批准的兽用镇静剂,目前正被滥用,既作为一种名为“Tranq-dope”的街头毒品中的阿片类掺杂物,也作为一种约会强奸药物。鉴于其目前在全球范围内几乎与芬太尼及其衍生物普遍同时使用,XYL已成为寻求开发用于检测它的便携式且经济高效的传感器的研究人员的主要目标。基于XYL氧化的电化学传感器虽然有用,但由于某些干扰物和固有的电极污染而存在局限性,这使得该方法不太可靠,尤其是在某些样品基质中。在这项工作中,采用了修饰电极平台,该平台结合了用于提高灵敏度的多壁碳纳米管层、半透性聚氨酯(PU)层以及使用β-环糊精实现选择性的主客体化学,通过互补吸附阴极溶出分析来检测XYL。对修饰电极传感器进行了优化,以尽量减少高电位并保持抗污染能力,并对其进行了研究以更好地理解PU层的功能。吸附阴极溶出差分脉冲伏安法的使用间接表明了复杂样品介质(饮料和合成尿液)中XYL的存在和浓度。以这种方式使用时,修饰电极对XYL的总体平均灵敏度约为35(±9)nA/μM,定量限<10 ppm,同时还为不同类型样品中XYL的分析提供了适应性。通过扩展这些XYL传感器的功能,本研究代表了医疗专业人员、急救人员、法医调查人员和吸毒者用于限制暴露并帮助遏制XYL危险和非法使用的工具开发的另一个方面。