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A Superoxide Sensor Based on a Multilayer Cytochrome c Electrode

机译:基于多层细胞色素c电极的超氧化物传感器

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A novel multilayer cytochrome c electrode for the quantification of superoxide radical concentrations is introduced. The electrode consists of alternating layers of cytochrome c and poly(aniline(sulfonic acid)) on a gold wire electrode. The formation of multilayer structures was proven by SPR experiments. Assemblies with 2-15 protein layers showed electrochemical communication with the gold electrode. For every additional layer, a substantial increase in electrochemically active cytochrome c (cyt. c) was found. For electrodes of more than 10 layers, the increase was more than 1 order of magnitude as compared to monolayer electrode systems. Thermodynamic and kinetic parameters of the electrodes were characterized. The mechanism of electron transfer within the multilayer assembly was studied, with results suggesting a protein-protein electron-transfer model. Electrodes of 2-15 layers were applied to the in vitro quantification of enzymatically generated superoxide, showing superior sensitivity as compared to a monolayer-based sensor. An electrode with 6 cyt. c/PASA layers showed the highest sensitivity of the systems studied, giving an increase in sensitivity of half an order of magnitude versus the that of the monolayer electrode. The stability of the system was optimized using thermal treatment, resulting in no loss in sensor signal or protein loading after 10 successive measurements or 2 days of storage.
机译:介绍了一种新型的用于超氧自由基浓度定量的多层细胞色素c电极。电极由金丝电极上的细胞色素c和聚苯胺(磺酸)的交替层组成。通过SPR实验证明了多层结构的形成。具有2-15个蛋白质层的组件显示出与金电极的电化学连通。对于每个附加层,发现电化学活性细胞色素c(cyt。c)都显着增加。对于超过10层的电极,与单层电极系统相比,增加幅度超过1个数量级。表征了电极的热力学和动力学参数。研究了多层组件中电子转移的机理,结果提示了蛋白质-蛋白质电子转移模型。将2-15层的电极应用于酶促生成的超氧化物的体外定量,与基于单层的传感器相比,显示出更高的灵敏度。 6 cyt的电极。 c / PASA层显示了所研究系统的最高灵敏度,与单层电极相比,灵敏度提高了一半数量级。使用热处理优化了系统的稳定性,连续10次测量或保存2天后,传感器信号或蛋白质负载没有损失。

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