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Aptameric detection of quinine in reclaimed wastewater using a personal glucose meter

机译:使用个人血糖仪对再生废水中的奎宁进行aptameric检测

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Quantification of small-molecule analytes in an aqueous environment remains expensive due to the high costs of instruments and human resources. An aptamer–invertase biosensor coupled with a personal glucose meter (PGM) is a precise and promising method to substitute the traditional instruments. Herein, using quinine as an example, we demonstrated the feasibility of using an aptamer–invertase biosensor to quantify quinine in reclaimed wastewater. The analytical procedure consisted of building the structure of aptamer–DNA–invertase on magnetic beads, competition between quinine and invertase, catalysis of sucrose by the released invertase, and quantification of glucose by a PGM. The dissociation coefficient of aptamer and quinine was estimated to be 0.36 μM by isothermal titration calorimetry, indicating very strong affinity between them. The linear calibration curve of quinine was in the range from 0 to 2 μM. The limit of detection (LOD) was estimated to be 0.13 μM for quinine in pure water and 0.32 μM for quinine in reclaimed wastewater. The selectivity for quinine detection in the presence of other pharmaceutics was satisfactory. Thus, the aptamer–invertase–PGM method is an inexpensive, affordable and feasible choice for quinine analysis in wastewater management.
机译:由于仪器和人力资源的高昂成本,在水性环境中对小分子分析物进行定量分析仍然很昂贵。适体转化酶生物传感器与个人血糖仪(PGM)结合使用是一种精确而有前途的方法,可以替代传统仪器。在此,以奎宁为例,我们证明了使用适体-转化酶生物传感器定量再生废水中奎宁的可行性。分析程序包括在磁珠上构建适体–DNA–转化酶的结构,奎宁和转化酶之间的竞争,释放的转化酶对蔗糖的催化作用以及PGM对葡萄糖的定量。通过等温滴定热法,适体和奎宁的解离系数估计为0.36μM,表明它们之间的亲和力非常强。奎宁的线性校准曲线在0至2μM的范围内。奎宁在纯水中的检出限(LOD)估计为0.13μM,在再生废水中的奎宁为0.32μM。在其他药物存在下奎宁检测的选择性令人满意。因此,适体-转化酶-PGM方法是废水管理中奎宁分析的一种廉价,可负担且可行的选择。

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