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Community Sewage Sensors towards Evaluation of Drug Use Trends: Detection of Cocaine in Wastewater with DNA-Directed Immobilization Aptamer Sensors

机译:社区污水传感器用于评估药物使用趋势:使用DNA定向固定式适体传感器检测废水中的可卡因

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摘要

Illicit drug use has a global concern and effective monitoring and interventions are highly required to combat drug abuse. Wastewater-based epidemiology (WBE) is an innovative and cost-effective approach to evaluate community-wide drug use trends, compared to traditional population surveys. Here we report for the first time, a novel quantitative community sewage sensor (namely DNA-directed immobilization of aptamer sensors, DDIAS) for rapid and cost-effective estimation of cocaine use trends via WBE. Thiolated single-stranded DNA (ssDNA) probe was hybridized with aptamer ssDNA in solution, followed by co-immobilization with 6-mercapto-hexane onto the gold electrodes to control the surface density to effectively bind with cocaine. DDIAS was optimized to detect cocaine at as low as 10 nM with a dynamic range from 10 nM to 5 μM, which were further employed for the quantification of cocaine in wastewater samples collected from a wastewater treatment plant in seven consecutive days. The concentration pattern of the sampling week is comparable with that from mass spectrometry. Our results demonstrate that the developed DDIAS can be used as community sewage sensors for rapid and cost-effective evaluation of drug use trends, and potentially implemented as a powerful tool for on-site and real-time monitoring of wastewater by un-skilled personnel.
机译:非法使用毒品已成为全球关注的问题,为打击滥用毒品,迫切需要有效的监测和干预措施。与传统的人口调查相比,基于废水的流行病学(WBE)是一种创新且具有成本效益的方法,可以评估社区范围内的毒品使用趋势。在这里,我们首次报告了一种新型的定量社区污水传感器(即DNA定向适体传感器的固定化DDIAS),用于通过WBE快速,经济高效地估算可卡因的使用趋势。将巯基化的单链DNA(ssDNA)探针与溶液中的适体ssDNA杂交,然后与6-巯基己烷共固定在金电极上,以控制表面密度与可卡因有效结合。 DDIAS经过优化,可检测低至10 nM的可卡因,动态范围从10 nM到5μM,可用于连续七天从废水处理厂收集的废水样品中的可卡因定量分析。采样周的浓度模式与质谱法相当。我们的结果表明,开发的DDIAS可以用作社区污水传感器,以快速,经济高效地评估药物使用趋势,并有可能作为非熟练人员现场和实时监控废水的强大工具。

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