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Real-Time Measurements of the Redox States of c-Type Cytochromes in Electroactive Biofilms: A Confocal Resonance Raman Microscopy Study

机译:电活性生物膜中c型细胞色素的氧化还原状态的实时测量:共聚焦共振拉曼显微镜研究。

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摘要

Confocal Resonance Raman Microscopy (CRRM) was used to probe variations of redox state of c-type cytochromes embedded in living mixed-culture electroactive biofilms exposed to different electrode polarizations, under potentiostatic and potentiodynamic conditions. In the absence of the metabolic substrate acetate, the redox state of cytochromes followed the application of reducing and oxidizing electrode potentials. Real-time monitoring of the redox state of cytochromes during cyclic voltammetry (CV) in a potential window where cytochromes reduction occurs, evidenced a measurable time delay between the oxidation of redox cofactors probed by CV at the electrode interface, and oxidation of distal cytochromes probed by CRRM. This delay was used to tentatively estimate the diffusivity of electrons through the biofilm. In the presence of acetate, the resonance Raman spectra of young (10 days, j = 208±49 µA cm−2) and mature (57 days, j = 267±73 µA cm−2) biofilms show that cytochromes remained oxidized homogeneously even at layers as far as 70 µm from the electrode, implying the existence of slow metabolic kinetics that do not result in the formation of a redox gradient inside the biofilm during anode respiration. However, old biofilms (80 days, j = 190±37 µA cm−2) with thickness above 100 µm were characterized by reduced catalytic activity compared to the previous developing stages. The cytochromes in these biofilm were mainly in the reduced redox state, showing that only aged mixed-culture biofilms accumulate electrons during anode respiration. These results differ substantially from recent observations in pure Geobacter sulfurreducens electroactive biofilms, in which accumulation of reduced cytochromes is already observed in thinner biofilms, thus suggesting different bottlenecks in current production for mixed-culture and G. sulfurreducens biofilms.
机译:共焦共振拉曼显微镜(CRRM)用于在恒电位和恒电位条件下探测嵌入在暴露于不同电极极化的混合培养电活性生物膜中的c型细胞色素的氧化还原状态变化。在没有代谢底物乙酸盐的情况下,细胞色素的氧化还原状态跟随着还原和氧化电极电位的施加。在可能发生细胞色素减少的潜在窗口中,在循环伏安法(CV)期间实时监测细胞色素的氧化还原状态,证明了电极界面处CV探测到的氧化还原辅因子的氧化与远端细胞色素的氧化之间存在可测量的时间延迟由CRRM。该延迟被用来临时估计电子通过生物膜的扩散率。在乙酸盐的存在下,年轻(10天,j = 208±49 µA cm -2 )和成熟(57天,j = 267±73 µA cm -)的共振拉曼光谱2 )生物膜显示,即使在距电极70 µm的层上,细胞色素也仍被均匀氧化,这表明存在缓慢的代谢动力学,这不会导致阳极呼吸期间生物膜内部形成氧化还原梯度。但是,与以前的显影阶段相比,厚度大于100 µm的旧生物膜(80天,j = 190±37 µA cm -2 )的特征是催化活性降低。这些生物膜中的细胞色素主要处于还原氧化还原状态,表明只有老化的混合培养生物膜在阳极呼吸过程中才积累电子。这些结果与纯土杆菌还原电活性生物膜的最新观察结果有很大不同,在纯生物还原膜中已经观察到还原的细胞色素的积累,这表明混合培养和硫还原菌生物膜在当前生产中存在不同的瓶颈。

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