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Infrared attenuated total reflection (IR-ATR) spectroscopy for detecting drugs in human saliva

机译:红外衰减全反射(IR-ATR)光谱法检测人唾液中的药物

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The consumption of drugs is of great concern worldwide. Various drug tests for humans have been developed but there is no compact and easy-to-use test device available yet for direct semi-quantitative drug testing in the field. We suggest using attenuated total reflection (ATR) infrared spectroscopy as a sensing method to analyze human saliva samples with respect to drugs. In this paper, we present ATR spectra in the infrared range between 2300 and 900cm -1 as a first step towards such a device. We emphasize the common drug cocaine and its metabolites and investigate the problems of spectral interferences of selected diluents, masking agents, common medication, and soft drinks. Furthermore, spectra of saliva samples are recorded and a time-dependent change of the spectral signatures after alcohol consumption is presented. To the best of our knowledge, it is the first time that not only spectra of the drug of interest (cocaine) dissolved in water and in saliva but also spectra of interfering compounds possibly present in the saliva sample of a tested subject are discussed. This paper presents the most appropriate spectral range for strong cocaine absorption (including its metabolites) and minimum interference by the investigated substances. This spectral window is found to be between 1800 and 1710cm -1. In addition, we demonstrate the feasibility to identify cocaine in saliva at a concentration of 0.020mg/ml with IR-ATR-spectroscopy without any separation or extraction procedures. For example, this technique could also be applied for drug detection in waste water.
机译:毒品的消费在全世界引起极大关注。已经开发了用于人类的各种药物测试,但是还没有紧凑且易于使用的测试设备可用于本领域中的直接半定量药物测试。我们建议使用衰减全反射(ATR)红外光谱作为一种感测方法来分析有关药物的人唾液样本。在本文中,我们提出了在2300至900cm -1之间的红外范围内的ATR光谱,这是朝着这种设备迈进的第一步。我们重点介绍可卡因及其常见的代谢产物,并研究所选稀释剂,掩蔽剂,常用药物和软饮料的光谱干扰问题。此外,记录了唾液样品的光谱,并显示了饮酒后光谱特征随时间的变化。据我们所知,这是第一次不仅讨论了溶解在水和唾液中的目标药物(可卡因)的光谱,而且还讨论了被测对象唾液样品中可能存在的干扰化合物的光谱。本文介绍了最强的可卡因吸收(包括其代谢产物)和受研究物质的干扰最小的最合适光谱范围。发现该光谱窗口在1800和1710cm -1之间。此外,我们证明了无需任何分离或提取程序即可通过IR-ATR光谱法鉴定唾液中可卡因的浓度为0.020mg / ml的可行性。例如,该技术还可用于废水中的药物检测。

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