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Electrochemical Recognition of Metalloproteins by Bromide-modified Silver Electrode - A New Method

机译:溴化物修饰的银电极电化学识别金属蛋白的新方法

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A bromide–modified silver electrode is reported, in the present study, to catalyze the redox reactions of metalloproteins. This study describes that the bromide ions show very good redox behavior with silver electrode. The cathodic and anodic peak potentials were related to the concentration of bromide ions involved in making bromide-modified silver electrode. The electrode reaction in the bromine solution was a diffusion-controlled process. Positive potential shift of the bromide ions was seen when different proteins were added to the solution using a silver electrode. New cathodic and anodic peaks were observed at different potential ranges for myoglobin, cytochrome c and catalase. A linearly increasing cathodic peak current of bromide ions was seen when the concentration of superoxide dismutase was increased in the test solution. However, no change for albumin was observed when its concentration was increased in the test solution. Present data proves our methodology as an easy-to-use analysis for comparing the redox potentials of different metalloproteins and differentiating the metallo-from non-metalloproteins. In this study, we introduced an interesting method for bio-electrochemical analyses.
机译:在本研究中,据报道溴化银修饰的银电极可催化金属蛋白的氧化还原反应。这项研究描述了溴离子在银电极上显示出非常好的氧化还原行为。阴极和阳极峰值电位与制造溴化物修饰的银电极时所涉及的溴离子浓度有关。溴溶液中的电极反应是扩散控制的过程。当使用银电极将不同的蛋白质添加到溶液中时,可以看到溴离子的正电位移动。在肌红蛋白,细胞色素c和过氧化氢酶的不同电位范围内观察到新的阴极和阳极峰。当测试溶液中超氧化物歧化酶的浓度增加时,可以看到溴离子的阴极峰电流线性增加。然而,当在测试溶液中其浓度增加时,未观察到白蛋白的变化。目前的数据证明了我们的方法学是一种易于使用的分析方法,用于比较不同金属蛋白的氧化还原电位并区分金属蛋白与非金属蛋白。在这项研究中,我们介绍了一种有趣的生物电化学分析方法。

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