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Following Nature: Bioinspired Mediation Strategy for Gram-Positive Bacterial Cells

机译:以下性质:革兰氏阳性细菌细胞的生物透明调解策略

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摘要

Employment of redox polymers as mediators is a promising concept to facilitate electron transfer (ET) and improve operational performance of bioelectrochemical systems. Materials science offers a broad range of mediation possibilities; however, their employment so far relies on a trial-and-error approach, since there is no comprehensive understanding of the nature of the ET between bacterial cells and redox polymers. In the current work, the polymer-cell interaction is investigated in detail and clear experimental evidence that a redox polymer containing quinone moieties mimicking the natural bacterial charge carriers can be incorporated into the respiratory chain of Gram-positive Enterococcus faecalis cells and outperform monomeric mediator in ET features is reported. The presented findings disclose the main principles to overcome incompatibilities between abiotic charge carriers and microbial metabolism and provide essential knowledge for further development of mediated microbial bioelectrocatalysis.
机译:作为介质的氧化还原聚合物的就业是一种有希望的概念,可促进电子转移(ET)并改善生物电化学系统的操作性能。材料科学提供广泛的调解可能性;但是,到目前为止,他们的就业依赖于试验和错误方法,因为没有全面了解细菌细胞和氧化还原聚合物之间的等性质。在当前的工作中,详细研究了聚合物 - 细胞相互作用,并清楚的实验证据,即含有模仿天然细菌电荷载体的醌部分的氧化还原聚合物可以掺入革兰氏阳性肠球菌细胞的呼吸链中,并且优于单体介质报告了特征。所提出的调查结果公开了克服非生物电荷载体和微生物代谢之间的不兼容性的主要原则,并为进一步发展的介导的微生物生物电池提供了基本知识。

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