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Drugs of abuse detection in saliva based on actuated optical method

机译:基于激励光学方法的唾液中滥用药物检测

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There has been a considerable increase in the abuse of drugs during the past decade. Combing drug use with driving is very dangerous. More than 11% of drivers in a roadside survey tested positive for drugs, while 18% of drivers killed in accidents tested positive for drugs as reported in USA, 2007. Toward developing a rapid drug screening device, we use saliva as the sample, and combining the traditional immunoassays method with optical magnetic technology. There were several methods for magnetic nanoparticles detection, such as magnetic coils, SQUID, microscopic imaging, and Hall sensors. All of these methods were not suitable for our demands. By developing a novel optical scheme, we demonstrate high-sensitivity detection in saliva. Drugs of abuse are detected at sub-nano gram per milliliter levels in less than 120 seconds. Evanescent wave principle has been applied to sensitively monitor the presence of magnetic nanoparticles on the binding surface. Like the total internal reflection fluorescence microscope (TIRFM), evanescent optical field is generated at the plastic/fluid interface, which decays exponentially and penetrates into the fluid by only a sub-wavelength distance. By disturbance total internal reflection with magnetic nanoparticles, the optical intensity would be influenced. We then detected optical output by imaging the sensor surface onto a CCD camera. We tested four drugs tetrahydrocannabinol (THC), methamphetamine (MAMP), ketamine (KET), morphine (OPI), using this technology. 100 ng mL-1 sensitivity was achieved, and obvious evidence showed that this results could be improved in further researches.
机译:在过去的十年中,滥用毒品的现象大大增加。将吸毒与驾驶相结合是非常危险的。根据美国在2007年的报道,路边调查中超过11%的驾驶员的药物测试呈阳性,而在事故中丧生的驾驶员中的18%的药物测试呈阳性。为了开发一种快速的药物筛选设备,我们使用唾液作为样本,结合了传统的免疫分析方法和光磁技术。有几种用于磁性纳米粒子检测的方法,例如电磁线圈,SQUID,显微成像和霍尔传感器。所有这些方法都不适合我们的要求。通过开发一种新颖的光学方案,我们证明了唾液中的高灵敏度检测。在不到120秒的时间内,以每纳克亚纳克的水平检测到滥用药物。 van逝波原理已被应用于灵敏地监测结合表面上磁性纳米颗粒的存在。像全内反射荧光显微镜(TIRFM)一样,e逝光场在塑料/流体界面处产生,它呈指数衰减并仅以亚波长距离渗透到流体中。通过干扰磁性纳米粒子的全内反射,将影响光强度。然后,我们通过将传感器表面成像到CCD摄像机上来检测光输出。我们使用该技术测试了四种药物四氢大麻酚(THC),甲基苯丙胺(MAMP),氯胺酮(KET),吗啡(OPI)。达到了100 ng mL-1的灵敏度,并且明显的证据表明该结果可以在进一步的研究中得到改善。

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