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Next Generation Programmable Bio-Nano-Chip System for On-Site Detection in Oral Fluids

机译:用于口腔液现场检测的下一代可编程生物纳米芯片系统

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摘要

Current on-site drug of abuse detection methods involve invasive sampling of blood and urine specimens, or collection of oral fluid, followed by qualitative screening tests using immunochromatographic cartridges. Test confirmation and quantitative assessment of a presumptive positive are then provided by remote laboratories, an inefficient and costly process decoupled from the initial sampling. Recently, a new noninvasive oral fluid sampling approach that is integrated with the chip-based Programmable Bio-Nano-Chip (p-BNC) platform has been developed for the rapid (~ 10 minutes), sensitive detection (~ ng/ml) and quantitation of 12 drugs of abuse. Furthermore, the system can provide the time-course of select drug and metabolite profiles in oral fluids. For cocaine, we observed three slope components were correlated with cocaine-induced impairment using this chip-based p-BNC detection modality. Thus, this p-BNC has significant potential for roadside drug testing by law enforcement officers. Initial work reported on chip-based drug detection was completed using ‘macro’ or “chip in the lab” prototypes, that included metal encased “flow cells”, external peristaltic pumps and a bench-top analyzer system instrumentation. We now describe the next generation miniaturized analyzer instrumentation along with customized disposables and sampling devices. These tools will offer real-time oral fluid drug monitoring capabilities, to be used for roadside drug testing as well as testing in clinical settings as a non-invasive, quantitative, accurate and sensitive tool to verify patient adherence to treatment.
机译:当前的现场滥用药物检测方法涉及对血液和尿液样本进行侵入性采样,或收集口腔液体,然后使用免疫色谱柱进行定性筛选测试。然后由远程实验室提供对推定阳性结果的测试确认和定量评估,这是一个效率低下且成本高昂的过程,与初始采样分离。最近,已开发出一种新的无创口腔液采样方法,该方法与基于芯片的可编程生物纳米芯片(p-BNC)平台集成在一起,可快速(〜10分钟),灵敏检测(〜ng / ml)和定量12种滥用药物。此外,该系统可以提供口服液中所选药物和代谢产物概况的时程。对于可卡因,我们观察到了三个斜率成分与使用这种基于芯片的p-BNC检测方法可卡因引起的损伤相关。因此,这种p-BNC在执法人员进行路边药物测试方面具有巨大潜力。报告的基于芯片的药物检测的初步工作是使用“宏”或“实验室中的芯片”原型完成的,该原型包括装有​​金属的“流通池”,外部蠕动泵和台式分析仪系统仪器。现在,我们将介绍下一代小型分析仪仪器以及定制的一次性设备和采样设备。这些工具将提供实时的口服液体药物监测功能,可用于路边药物测试以及临床环境中的测试,作为一种无创,定量,准确和敏感的工具,可验证患者对治疗的依从性。

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