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共聚焦激光扫描显微镜(CLSM)与拉曼显微镜(RM)的联合应用:对胞外聚合物基质的研究

Combined use of confocal laser scanning microscopy (CLSM) and Raman microscopy (RM): investigations on EPS-Matrix.

作者信息

Wagner Michael, Ivleva Natalia P, Haisch Christoph, Niessner Reinhard, Horn Harald

机构信息

Technische Universität München, Institute of Water Quality Control, Am Coulombwall, 85748 Garching, Germany.

出版信息

Water Res. 2009 Jan;43(1):63-76. doi: 10.1016/j.watres.2008.10.034. Epub 2008 Oct 26.

Abstract

Confocal laser scanning microscopy (CLSM) was applied in combination with Raman microscopy (RM) for the characterization of heterotrophic biofilms. Compared to CLSM, RM allows for a deeper insight into the chemical structure of extracellular polymeric substances (EPS) of the biofilm matrix. A low load of glucose (2 g m(-2)d(-1)) was applied as substrate to ensure small growth rates of the heterotrophic biofilm. To investigate the influence of hydrodynamic conditions on the chemical composition of EPS, a three funnel flow system was used, wherein biofilms were grown at Reynolds numbers of 1000, 2500 and 4000, respectively. 31 and 92 days after inoculation with activated sludge supernatant RM was applied as an additional technique to standard CLSM measurements for a more detailed analysis of the biofilm matrix. Polysaccharide-related Raman bands are in good agreement with the lectin binding analysis from CLSM. For the older biofilm, lectin binding analysis showed no change in the composition of EPS, whereas Raman spectra pointed out a change of EPS composition from predominantly polysaccharides to predominantly (glyco) proteins. For the applied substrate condition no significant influence of the Reynolds number on the chemical properties was observed.

摘要

共聚焦激光扫描显微镜(CLSM)与拉曼显微镜(RM)联用,用于表征异养生物膜。与CLSM相比,RM能够更深入地洞察生物膜基质中胞外聚合物(EPS)的化学结构。施加低负荷葡萄糖(2 g m(-2)d(-1))作为底物,以确保异养生物膜的生长速率较小。为了研究流体动力学条件对EPS化学成分的影响,使用了一个三漏斗流动系统,其中生物膜分别在雷诺数为1000、2500和4000的条件下生长。在接种活性污泥上清液31天和92天后,将RM作为标准CLSM测量的附加技术,用于对生物膜基质进行更详细的分析。多糖相关的拉曼谱带与CLSM的凝集素结合分析结果高度一致。对于较老的生物膜,凝集素结合分析表明EPS的组成没有变化,而拉曼光谱指出EPS的组成从主要是多糖转变为主要是(糖)蛋白。在所应用的底物条件下,未观察到雷诺数对化学性质有显著影响。

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