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Thermal stability and electrontransfer reactionof modified myoglobin immobilized ona carbon electrode in poly(ethylene oxide)oligomers

机译:聚环氧乙烷低聚物中固定在碳电极上的修饰肌红蛋白的热稳定性和电子转移反应

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Poly(ethylene oxide) (PEO)-modified myoglobin (PEO—Mb) was immobilized on a carbon electrode with the aid of polyelectrolytes. and the redox response was successively anaiyzed in salt-containing PEO oligomers. Complexation of PEO—Mb with poly-L-lysine was found to be quite effective in maintaining a constant peak current in cyclic voltammograms for more than 20 h, but the peak current gradually decreased at 500C. Addition of poly-L-glutamic acid or their polyion complex was less effective to fix the PEO—Mb on the electrode. PEO—Mb was fixed through electrostatic interaction between PEO —Mb and poly-L-lysine. In order to achieve more stable redox activity of Mb in PEO oligomers, covalent immobilization of Mb to electrode surface was attempted. In this work, the maleic anhydride unit in the PEO—maleic anhydride copolymer was initially used to fix the Mb, followed by an ester formation between newly generated carboxylic groups and hydroxyl groups on the electrode surface. A stable redox response was obtained, and this effective immobilization of Mb on the electrode has yielded thermally stable redox response for 30 h even at 800C without denaturation nor elution of Mb into PEO oligomers.
机译:借助聚电解质将聚环氧乙烷(PEO)改性的肌红蛋白(PEO-Mb)固定在碳电极上。并在含盐的PEO低聚物中依次分析了氧化还原反应。发现PEO-Mb与聚L-赖氨酸的络合在保持循环伏安图中恒定的峰值电流超过20小时方面非常有效,但峰值电流在500°C时逐渐降低。聚-L-谷氨酸或其聚离子络合物的添加将PEO-Mb固定在电极上的效果较差。 PEO-Mb通过PEO-Mb与聚L-赖氨酸之间的静电相互作用固定。为了在PEO低聚物中获得更稳定的Mb氧化还原活性,尝试了将Mb共价固定到电极表面。在这项工作中,首先使用PEO-马来酸酐共聚物中的马来酸酐单元固定Mb,然后在电极表面上新生成的羧基和羟基之间形成酯。获得了稳定的氧化还原响应,并且即使在800℃下,Mb在电极上的这种有效固定也产生了30小时的热稳定氧化还原响应,而没有Mb变性或不洗脱到PEO低聚物中。

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