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Electrochemical Probing through a Redox CapacitorTo Acquire Chemical Information on Biothiols

机译:通过氧化还原电容器进行电化学探测获取有关生物硫醇的化学信息

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摘要

The acquisition of chemical information is a critical need for medical diagnostics, food/environmental monitoring, and national security. Here, we report an electrochemical information processing approach that integrates (i) complex electrical inputs/outputs, (ii) mediators to transduce the electrical I/O into redox signals that can actively probe the chemical environment, and (iii) a redox capacitor that manipulates signals for information extraction. We demonstrate the capabilities of this chemical information processing strategy using biothiols because of the emerging importance of these molecules in medicine and because their distinct chemical properties allow evaluation of hypothesis-driven information probing. We show that input sequences can be tailored to probe for chemical information both qualitatively (step inputs probe for thiol-specific signatures) and quantitatively. Specifically, we observed picomolar limits of detection and linear responses to concentrations over 5 orders of magnitude (1 pM–0.1 μM). This approach allows the capabilities of signal processing to be extendedfor rapid, robust, and on-site analysis of chemical information.
机译:化学信息的获取是医学诊断,食品/环境监测和国家安全的关键需求。在这里,我们报告了一种电化学信息处理方法,该方法集成了(i)复杂的电输入/输出,(ii)介体以将电I / O转换为可以主动探测化学环境的氧化还原信号,以及(iii)处理信号以进行信息提取。我们展示了使用生物硫醇的化学信息处理策略的功能,这是由于这些分子在医学中的重要性不断提高,并且由于它们独特的化学性质可以评估假设驱动的信息探测。我们显示,输入序列可以进行定制,以定性地(针对硫醇特异性标记的步骤输入探针)和定量地探测化学信息。具体来说,我们观察到了皮摩尔的检测限和对浓度超过5个数量级(1 pM–0.1μM)的线性响应。这种方法可以扩展信号处理能力用于化学信息的快速,可靠和现场分析。

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