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Magnetic field effects on cytochrome c-mediated bioelectrocatalytic transformations

机译:磁场对细胞色素c介导的生物电催化转化的影响

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Constant magnetic fields affect many biological transformations, but we lack mechanistic understanding of the processes. The magnetohydrodynamic effect may account for the enhancement of bioelectrocatalytic transformations at interfaces. This is exemplified by the bioelectrocatalyzed cytochrome c-mediated reduction of oxygen and oxidation of lactate in the presence of cytochrome oxidase and lactate dehydrogenase, respectively. We observe significant magnetic field effects on the rates of bioelectrochemical transformations (ca. 3-fold increase) at the functionalized interfaces at field strengths, B, up to 1 T. We show that the limiting current is proportional to the (BC*1/3)-C-1/3, where C-* is the concentration of electroactive species. The results may have important implications on the understanding of the magnetic field effects on natural biocatalytic processes at membranes and on the enhancement of biotransformations in biotechnology.
机译:恒定磁场会影响许多生物转化,但是我们缺乏对过程的机械理解。磁流体动力学效应可以解释界面处生物电催化转化的增强。在存在细胞色素氧化酶和乳酸脱氢酶的情况下,通过生物电催化的细胞色素c介导的氧的还原和乳酸的氧化可以举例说明。我们观察到在磁场强度B高达1 T的情况下,磁场对功能化界面处生物电化学转变速率的影响(大约增加3倍)。我们显示极限电流与(BC * 1 / 3)-C-1 / 3,其中C- *是电活性物质的浓度。结果可能对理解磁场对膜上自然生物催化过程的影响以及对生物技术中生物转化的增强具有重要意义。

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