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复杂流体中无需偏压的柔性石墨烯微电极的 pH 传感性能:从磷酸盐缓冲溶液到人血清。

pH Sensing Properties of Flexible, Bias-Free Graphene Microelectrodes in Complex Fluids: From Phosphate Buffer Solution to Human Serum.

机构信息

Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, PA, 19104, USA.

Department of Chemistry, University of Pennsylvania, Philadelphia, PA, 19104, USA.

出版信息

Small. 2017 Aug;13(30). doi: 10.1002/smll.201700564. Epub 2017 Jun 14.

Abstract

Advances in techniques for monitoring pH in complex fluids can have a significant impact on analytical and biomedical applications. This study develops flexible graphene microelectrodes (GEs) for rapid (<5 s), very-low-power (femtowatt) detection of the pH of complex biofluids by measuring real-time Faradaic charge transfer between the GE and a solution at zero electrical bias. For an idealized sample of phosphate buffer solution (PBS), the Faradaic current is varied monotonically and systematically with the pH, with a resolution of ≈0.2 pH unit. The current-pH dependence is well described by a hybrid analytical-computational model, where the electric double layer derives from an intrinsic, pH-independent (positive) charge associated with the graphene-water interface and ionizable (negative) charged groups. For ferritin solution, the relative Faradaic current, defined as the difference between the measured current response and a baseline response due to PBS, shows a strong signal associated with ferritin disassembly and the release of ferric ions at pH ≈2.0. For samples of human serum, the Faradaic current shows a reproducible rapid (<20 s) response to pH. By combining the Faradaic current and real-time current variation, the methodology is potentially suitable for use to detect tumor-induced changes in extracellular pH.

摘要

在复杂流体中监测 pH 值的技术进展可能对分析和生物医学应用产生重大影响。本研究通过测量零偏置电下 GE 与溶液之间的实时法拉第电荷转移,开发了用于快速(<5 s)、超低功率(飞瓦)检测复杂生物流体 pH 值的柔性石墨烯微电极(GE)。对于磷酸盐缓冲溶液(PBS)的理想样品,法拉第电流与 pH 值单调且系统地变化,分辨率约为 0.2 pH 单位。电流- pH 值关系由混合分析-计算模型很好地描述,其中双电层源于与石墨烯-水界面相关的固有、与 pH 无关的(正)电荷和可电离(负)电荷基团。对于铁蛋白溶液,定义为测量电流响应与 PBS 引起的基线响应之差的相对法拉第电流,在 pH ≈2.0 时显示出与铁蛋白解组装和铁离子释放相关的强信号。对于人血清样本,法拉第电流对 pH 值表现出可重复的快速(<20 s)响应。通过结合法拉第电流和实时电流变化,该方法有可能适用于检测细胞外 pH 值的肿瘤诱导变化。

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本文引用的文献

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Probe for the measurement of cell surface pH in vivo and ex vivo.用于体内和体外测量细胞表面pH值的探针。
Proc Natl Acad Sci U S A. 2016 Jul 19;113(29):8177-81. doi: 10.1073/pnas.1608247113. Epub 2016 Jul 5.
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