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A Low-Cost Paper Glucose Sensor with Molecularly Imprinted Polyaniline Electrode

机译:具有分子印迹聚苯胺电极的低成本纸型葡萄糖传感器

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摘要

For the hundreds of millions of worldwide diabetic patients, glucose test strips are the most important and commonly used tool for monitoring blood glucose levels. Commercial test strips use glucose oxidases as recognition agents, which increases the cost and reduces the durability of test strips. To lower the cost of glucose sensors, we developed a paper-based electrical sensor with molecularly imprinted glucose recognition sites and demonstrated the determination of various glucose concentrations in bovine blood solutions. The sensing electrode is integrated with molecular recognition sites in the conductive polymer. A calibration graph as a function of glucose concentration in aqueous solution was acquired and matched with a correlation coefficient of 0.989. We also demonstrated the determination of the added glucose concentrations ranging from 2.2 to 11.1 mM in bovine blood samples with a linear correlation coefficient of 0.984. This non-enzymatic glucose sensor has the potential to reduce the health care cost of test strips as well as make glucose sensor test strips more accessible to underserved communities.
机译:对于全球数亿糖尿病患者而言,葡萄糖试纸是监测血糖水平最重要,最常用的工具。商业化的试纸使用葡萄糖氧化酶作为识别剂,这增加了成本并降低了试纸的耐久性。为了降低葡萄糖传感器的成本,我们开发了一种带有分子印迹葡萄糖识别位点的纸质电子传感器,并演示了测定牛血溶液中各种葡萄糖浓度的方法。感应电极与导电聚合物中的分子识别位点集成在一起。获得作为水溶液中葡萄糖浓度的函数的校准图,并与0.989的相关系数匹配。我们还证明了测定牛血样中添加的葡萄糖浓度范围为2.2至11.1 mM,线性相关系数为0.984。这种非酶促葡萄糖传感器有潜力降低试纸的卫生保健成本,并使葡萄糖传感器试纸更容易为服务欠缺的社区所用。

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