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In situ analysis of a silver nanoparticle-precipitating Shewanella biofilm by surface enhanced confocal Raman microscopy

机译:通过表面增强共焦拉曼显微镜原位分析银纳米颗粒沉淀希瓦氏菌生物膜

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摘要

Shewanella oneidensis MR-1 is an electroactive bacterium, capable of reducing extracellular insoluble electron acceptors, making it important for both nutrient cycling in nature and microbial electrochemical technologies, such as microbial fuel cells and microbial electrosynthesis. When allowed to anaerobically colonize an Ag/AgCl solid interface, S. oneidensis has precipitated silver nanoparticles (AgNp), thus providing the means for a surface enhanced confocal Raman microscopy (SECRaM) investigation of its biofilm. The result is the in-situ chemical mapping of the biofilm as it developed over time, where the distribution of cytochromes, reduced and oxidized flavins, polysaccharides and phosphate in the undisturbed biofilm is monitored. Utilizing AgNp bio-produced by the bacteria colonizing the Ag/AgCl interface, we could perform SECRaM while avoiding the use of a patterned or roughened support or the introduction of noble metal salts and reducing agents. This new method will allow a spatially and temporally resolved chemical investigation not only of Shewanella biofilms at an insoluble electron acceptor, but also of other noble metal nanoparticle-precipitating bacteria in laboratory cultures or in complex microbial communities in their natural habitats.
机译:沙瓦氏菌(Shewanella oneidensis)MR-1是一种电活性细菌,能够还原细胞外不溶性电子受体,因此对于自然界中的营养循环和微生物电化学技术(例如微生物燃料电池和微生物电合成)都非常重要。当允许在厌氧条件下定殖在Ag / AgCl固体界面上时,沙门氏菌已经沉淀出银纳米颗粒(AgNp),从而为对其生物膜进行表面增强共聚焦拉曼显微镜(SECRaM)研究提供了手段。结果是随着时间的推移生物膜的原位化学作图,可监测未受干扰的生物膜中细胞色素,还原的和氧化的黄素,多糖和磷酸盐的分布。利用由细菌在Ag / AgCl界面上定殖而生物产生的AgNp,我们可以进行SECRaM,同时避免使用有图案或粗糙的载体或避免引入贵金属盐和还原剂。这种新方法不仅可以在空间和时间上解析化学研究,不仅包括不溶性电子受体上的希瓦氏菌生物膜,还包括实验室培养物中或自然栖息地中复杂微生物群落中其他沉淀贵金属纳米颗粒的细菌。

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