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Scanning electrochemical microscopy and its potential for studying biofilms and antimicrobial coatings

机译:扫描电化学显微镜及其研究生物膜和抗微生物涂层的潜力

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摘要

Biofilms are known to be well-organized microbial communities embedded in an extracellular polymeric matrix, which supplies bacterial protection against external stressors. Biofilms are widespread and diverse, and despite the considerable large number of publications and efforts reported regarding composition, structure and cell-to-cell communication within biofilms in the last decades, the mechanisms of biofilm formation, the interaction and communication between bacteria are still not fully understood. This knowledge is required to understand why biofilms form and how we can combat them or how we can take advantage of these sessile communities, e.g. in biofuel cells. Therefore, in situ and real-time monitoring of nutrients, metabolites and quorum sensing molecules is of high importance, which may help to fill that knowledge gap. This review focuses on the potential of scanning electrochemical microscopy (SECM) as a versatile method for in situ studies providing temporal and lateral resolution in order to elucidate cell-to-cell communication, microbial metabolism and antimicrobial impact, e.g. of antimicrobial coatings through the study of electrochemical active molecules. Given the complexity and diversity of biofilms, challenges and limitations will be also discussed.
机译:已知生物膜是嵌入细胞外聚合物基质中的良好组织的微生物群体,其为外部压力源提供细菌保护。生物膜普遍且多样化,尽管在过去几年中,在生物膜内的组成,结构和细胞对细胞通信中报告了大量出版物和努力,但细菌之间的生物膜形成,相互作用和沟通的机制仍然没有完全明白。这种知识必须理解为什么生物膜形式以及我们如何打击它们或如何利用这些无梗塞社区,例如如何利用这些术式社区。在生物燃料细胞中。因此,原位和对营养素的实时监测,代谢物和法定传感分子具有很高的重要性,这可能有助于填补知识差距。该综述侧重于扫描电化学显微镜(SECM)作为原位研究的通用方法,提供时间和横向分辨率,以阐明细胞 - 细胞通信,微生物代谢和抗微生物影响。通过研究电化学活性分子的抗菌涂层。鉴于生物膜的复杂性和多样性,还将讨论挑战和局限性。

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