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An Enzymatic Electrochemical Biosensor for Real-Time Detection of Physiologically Relevant Nicotine Concentrations

机译:一种酶促电化学生物传感器,用于实时检测生理相关的尼古丁浓度

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The glucose biosensor, built upon the redox enzyme glucose oxidase, is the most commercially successful and studied enzymatic biosensor. However, the lack of available and functionally validated enzymes is prohibiting the development of redox-based sensors for other important analytes. Herein, we present the development and assessment of an electrochemical nicotine biosensor, using genomic screening to identify the gene for a known nicotine catabolizing redox enzyme. The resulting nicotine biosensor demonstrated a specific, sensitive, and stable operational profile with a limit of detection of 27 μM over the range of 0-200 μM. This range is well within the physiological concentrations of nicotine present in smoker urine. Specificity and cross-reactivity were measured against structurally similar compounds to nicotine as well as to known physiological by-products. Our results highlight that this novel enzymatic electrochemical nicotine biosensor possesses operational capabilities for monitoring of nicotine in physiologically relevant conditions. The screening methodology can be generalized for the discovery of enzymes for novel sensor development.
机译:基于氧化还原酶葡萄糖氧化酶的葡萄糖生物传感器是最成功的和研究的酶生物传感器。然而,缺乏可用和功能验证的酶禁止开发用于其他重要分析物的氧化还原的传感器。在此,我们介绍了使用基因组筛选的电化学尼古丁生物传感器的开发和评估,以鉴定已知的尼古丁分解氧化还原酶的基因。得到的尼古丁生物传感器证明了特定的,敏感和稳定的操作轮廓,其检测限为27μm,范围为0-200μm。该范围在吸烟者尿液中尼古丁的生理浓度范围内。测量特异性和交叉反应性在对尼古丁的结构上类似的化合物以及已知的生理副产物中测量。我们的结果强调,这种新型酶促电化学尼古丁生物传感器具有在生理相关条件下监测尼古丁的操作能力。筛选方法可以推广用于发现新型传感器发展的酶。

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