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Visible spectroelectrochemical characterization of geobacter sulfurreducens biofilms on optically transparent indium tin oxide electrode

机译:光学透明的铟锡氧化物电极上的土壤还原硫生物膜的可见光谱电化学表征

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摘要

We report visible spectroelectrochemical (SEC) characterization of cytochrome c552 (cyt c552) in viable Geobacter sulfurreducens biofilms on tin-doped indium oxide (ITO) electrodes poised at 0.24 V vs.. SHE. G. sulfurreducens biofilms were grown in minimal medium with acetate as electron donor (turnover conditions), followed by 24 hours incubation in electron donor-depleted medium (non-turnover conditions). The electronic absorption spectra of G. sulfurreducens biofilms showed the lowest energy absorption band in the reduced state at 552 nm, which indicated excess of cyt c552 in the biofilm. The spectra under non-turnover conditions displayed gradual reduction of the cyt c552, following the step-wise decrease of electrode potential from 0.0 V to -0.6 V vs.. standard calomel electrode (SCE). The spectral changes were fully reversible in both positive and negative direction of the scan potential, with average midpoint potential value of -0.42 V vs.. SCE. Confocal microscopy analysis revealed that the thickness of biofilms under turnover conditions and non-turnover conditions was approximately 35 and 3.5 µm, respectively. This is the first study to observe the reversible redox conversion of cyt c552 in viable G. sulfurreducens biofilms.
机译:我们报告了可见的光谱电化学(SEC)表征细胞色素c552(cyt c552)在掺锡的氧化铟(ITO)电极上相对于SHE沉积的可行的Geobacter sulphreducens生物膜上的可见光。 G.sulfreducens生物膜在以乙酸盐为电子供体的基本培养基中生长(转换条件),然后在电子供体耗尽的培养基中培养24小时(非转换条件)。硫还原菌生物膜的电子吸收光谱在还原态下在552 nm处显示出最低的能量吸收带,这表明生物膜中Cyt c552过量。与标准甘汞电极(SCE)相比,电极电位从0.0 V逐步降低到-0.6 V,在非翻转条件下的光谱显示cyt c552逐渐降低。在扫描电势的正和负方向上,光谱变化是完全可逆的,平均中点电势值为-0.42 V vs. SCE。共聚焦显微镜分析表明,在周转条件和非周转条件下,生物膜的厚度分别约为35和3.5 µm。这是第一个观察到cyt c552在活的G. sulfreducens生物膜中可逆氧化还原转化的研究。

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