Ivleva Natalia P, Wagner Michael, Horn Harald, Niessner Reinhard, Haisch Christoph
Institute of Hydrochemistry, Technische Universität München, Marchioninistrasse 17, 81377, Munich, Germany.
Anal Bioanal Chem. 2009 Jan;393(1):197-206. doi: 10.1007/s00216-008-2470-5. Epub 2008 Nov 1.
In this study, the applicability of Raman microscopy (RM) for nondestructive chemical analysis of biofilm matrix, including microbial constituents and extracellular polymeric substances (EPS), has been assessed. The examination of a wide range of reference samples such as biofilm-specific polysaccharides, proteins, microorganisms, and encapsulated bacteria revealed characteristic frequency regions and specific marker bands for different biofilm constituents. Based on received data, the assignment of Raman bands in spectra of multispecies biofilms was performed. The study of different multispecies biofilms showed that RM can correlate various structural appearances within the biofilm to variations in their chemical composition and provide chemical information about a complex biofilm matrix. The results of RM analysis of biofilms are in good agreement with data obtained by confocal laser scanning microscopy (CLSM). Thus, RM is a promising tool for a label-free chemical characterization of different biofilm constituents. Moreover, the combination of RM with CLSM analysis for the study of biofilms grown under different environmental conditions can provide new insights into the complex structure/function correlations in biofilms.
在本研究中,已评估了拉曼显微镜(RM)对生物膜基质进行无损化学分析的适用性,该生物膜基质包括微生物成分和细胞外聚合物(EPS)。对多种参考样品(如生物膜特异性多糖、蛋白质、微生物和包囊细菌)的检测揭示了不同生物膜成分的特征频率区域和特定标记带。基于所获得的数据,对多物种生物膜光谱中的拉曼带进行了归属。对不同多物种生物膜的研究表明,RM可以将生物膜内的各种结构外观与其化学成分的变化相关联,并提供有关复杂生物膜基质的化学信息。生物膜的RM分析结果与共聚焦激光扫描显微镜(CLSM)获得的数据高度一致。因此,RM是一种用于对不同生物膜成分进行无标记化学表征的有前途的工具。此外,将RM与CLSM分析相结合用于研究在不同环境条件下生长的生物膜,可以为生物膜中复杂的结构/功能相关性提供新的见解。