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首页> 外文期刊>Journal of solid state electrochemistry >Bimetallic nanowire sensors for extracellular electrochemical hydrogen peroxide detection in HL-1 cell culture
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Bimetallic nanowire sensors for extracellular electrochemical hydrogen peroxide detection in HL-1 cell culture

机译:用于HL-1细胞培养的细胞外电化学过氧化氢检测的双金属纳米线传感器

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The present study of nanoelectrochemical sensors prepared by directed electrochemical nanowire assembly (DENA) is defined by the requirements of electrochemical analysis, where the transducer function of metallic nanowires is synergetically combined with their electrochemical catalytic activity with respect to a particular analyte. We show for the first time that this technique can be employed for metals (Pd, Au) and their bimetallic compositions to create various multicomponent sensor nanomaterials on a single chip without the use of multistep lithography for the spatially resolved analysis of solutions. The nanostructures of various compositions can be individually addressed when used in liquid media, so that the particular surface properties of the individual nanoarray elements can be used for the electrochemical analysis of specific analytes. The sensor application of these devices in electrolytes and cell culture conditions has been demonstrated for the first time. As an example, the Pd-Au nanowires prepared by DENA were used for a non-enzymatic analysis of H2O2 with a linear concentration interval of 10(-6)-10(-3) M, sensitivity of 18 mu A M-1, and detection limit of 3 x 10(-7) M at as low absolute value of the detection potential as - 0.05 V. This sensor was also proven for the detection of hydrogen peroxide in HL-1 cell culture, demonstrating good biocompatibility and support for the cell culture conditions. Using various DENA-grown electrochemical compositions on a single chip, a novel multisensor platform is proposed for the determination of various analytes in electrolyte solutions for biocompatible sensor arrays, flexible multianalyte environmental and technological process monitoring, and healthcare areas.
机译:通过指向电化学纳米线组件(DENA)制备的纳米电化学传感器的本研究由电化学分析的要求定义,其中金属纳米线的换能器功能与其相对于特定分析物的电化学催化活性协同结合。我们首次展示该技术可用于金属(Pd,Au)及其双金属组合物,以在单个芯片上创建各种多组分传感器纳米材料,而无需使用MultiSep光刻以进行空间解决的解决方案分析。当在液体介质中使用时,各种组合物的纳米结构可以单独寻址,使得各个纳米阵列元件的特定表面性质可用于特定分析物的电化学分析。首次证明了这些装置在电解质和细胞培养条件下的传感器应用。例如,DENA制备的PD-AU纳米线用于H 2 O 2的非酶促分析,线性浓度间隔为10(-6)-10(-3)m,敏感性为18μm-1,检测电位的低绝对值为3×10(-7)m的检出限为-0.05 V.该传感器还证明了HL-1细胞培养中的过氧化氢,展示了良好的生物相容性和支持细胞培养条件。在单个芯片上使用各种Dena生种电化学组合物,提出了一种新型多传感器平台,用于测定生物相容传感器阵列的电解质溶液中的各种分析,柔性多分子环境和技术过程监测和医疗区。

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