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Non-Invasive Self-Referencing Electrochemical Sensors for Quantifying Real-Time Biofilm Analyte Flux

机译:非侵入式自参考电化学传感器,用于定量实时生物膜分析物通量

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摘要

Current techniques for characterizing biofilm physiology lack the signal filtering capability required for quantifying signals associated with real time biologically active transport. Though a great deal was learned from previous investigations, no results have been reported on the characterization of in vivo, real time biofilm flux Using non-invasive (non-destructive) techniques. This article introduces the self-referencing technique for applications in biofilm physiology. Self-referencing is a non-invasive sensing modality which is capable of sensing changes in biologically active analyte flux as small as 10 fmol cm(-2) s(-1). Studies directly characterizing flux, as opposed to concentration, have the advantage of quantifying real time changes in biologically active transport which are otherwise lost to background noise. The use of this modality for characterizing biofilm physiology is validated with a reversible enzyme inhibition study. The experiment used self-referencing potentiometric sensors for quantifying real time ammonium and nitrite flux. Amperometric and optical sensing methods, though not presented herein, are also powerful sensing tools which benefit from operation in self-referencing mode. Reversible ammonia monooxygenase inhibition by a copper chelator (thiourea), and Subsequent relief by excess copper addition was successfully demonstrated using self-referencing ion-selective microelectrodes for a mature Nitrosomonas europaea biofilm.
机译:用于表征生物膜生理的当前技术缺乏量化与实时生物活性转运相关的信号所需的信号过滤能力。尽管从以前的研究中学到了很多东西,但尚未报道使用无创(非破坏性)技术对体内实时生物膜通量进行表征的结果。本文介绍了自参考技术在生物膜生理学中的应用。自参考是一种非侵入性的传感方式,能够感应到小至10 fmol cm(-2)s(-1)的生物活性分析物通量的变化。与通量相反,直接表征通量的研究具有量化生物活性运输过程中实时变化的优势,而实时变化本来会被背景噪声所损失。通过可逆酶抑制研究验证了该方法用于表征生物膜生理的用途。该实验使用自参考电位传感器对实时铵和亚硝酸盐通量进行定量。安培和光学感测方法虽然未在此处提出,但它们也是功能强大的感测工具,得益于在自参考模式下的操作。铜螯合剂(硫脲)对可逆性氨单加氧酶的抑制作用以及随后因过量铜的添加而产生的缓解作用已使用自参考离子选择性微电极成功地应用于成熟的亚硝化单胞菌生物膜。

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