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Fluorescence Lectin Bar-Coding of Glycoconjugates in the Extracellular Matrix of Biofilm and Bioaggregate Forming Microorganisms

机译:生物膜和生物聚集形成微生物的细胞外基质中糖缀合物的荧光凝集素条码

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Microbial biofilm systems are defined as interface-associated microorganisms embedded into a self-produced matrix. The extracellular matrix represents a continuous challenge in terms of characterization and analysis. The tools applied in more detailed studies comprise extraction/chemical analysis, molecular characterization, and visualisation using various techniques. Imaging by laser microscopy became a standard tool for biofilm analysis, and, in combination with fluorescently labelled lectins, the glycoconjugates of the matrix can be assessed. By employing this approach a wide range of pure culture biofilms from different habitats were examined using the commercially available lectins. From the results, a binary barcode pattern of lectin binding can be generated. Furthermore, the results can be fine-tuned and transferred into a heat map according to signal intensity. The lectin barcode approach is suggested as a useful tool for investigating the biofilm matrix characteristics and dynamics at various levels, e.g. bacterial cell surfaces, adhesive footprints, individual microcolonies, and the gross biofilm or bio-aggregate. Hence fluorescence lectin bar-coding (FLBC) serves as a basis for a subsequent tailor-made fluorescence lectin-binding analysis (FLBA) of a particular biofilm. So far, the lectin approach represents the only tool for in situ characterization of the glycoconjugate makeup in biofilm systems. Furthermore, lectin staining lends itself to other fluorescence techniques in order to correlate it with cellular biofilm constituents in general and glycoconjugate producers in particular.
机译:微生物生物膜系统被定义为嵌入自生基质中的与界面相关的微生物。细胞外基质在表征和分析方面代表着持续的挑战。在更详细的研究中使用的工具包括提取/化学分析,分子表征和使用各种技术的可视化。通过激光显微镜成像成为生物膜分析的标准工具,并且与荧光标记的凝集素结合使用,可以评估基质的糖结合物。通过采用这种方法,使用市售的凝集素检查了来自不同栖息地的各种纯培养生物膜。根据结果​​,可以生成凝集素结合的二进制条形码模式。此外,可以根据信号强度对结果进行微调并将其转换为热图。建议使用凝集素条形码方法作为研究生物膜基质特征和不同水平的动力学的有用工具。细菌细胞表面,粘合剂足迹,单个菌落以及生物膜或生物聚集体。因此,荧光凝集素条形码(FLBC)可作为后续特定生物膜特制荧光凝集素结合分析(FLBA)的基础。迄今为止,凝集素方法是生物膜系统中糖缀合物组成的原位表征的唯一工具。此外,凝集素染色使其自身适用于其他荧光技术,以便使其与一般的细胞生物膜成分,尤其是与糖缀合物的产生相关。

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