Simon Stéphane, Païro Bérengère, Villain Maud, D'Abzac Paul, Van Hullebusch Eric, Lens Piet, Guibaud Gilles
Groupement de Recherche Eau Sol Environnement, Faculté des Sciences et Techniques, Université de Limoges, 123, Avenue A. Thomas, 87060 Limoges Cedex, France.
Bioresour Technol. 2009 Dec;100(24):6258-68. doi: 10.1016/j.biortech.2009.07.013. Epub 2009 Aug 5.
The extracellular polymeric substances (EPS) extracted from three granular and one flocculant anaerobic sludges were characterised by size exclusion chromatography (SEC) using two serially linked chromatographic columns in order to obtain more detailed chromatograms. A Superdex peptide 10/300 GL (0.1-7 kDa) and Superdex 20010/300 GL (10-600 kDa) from Amersham Biosciences were used in series with a mobile phase at pH 7 with an ionic strength of 0.223 M (phosphate buffer 50 mM and NaCl 150 mM). A part of the EPS molecules displays hydrophobic and/or ionic interactions with the column packing. Interactions could be modified by changing the mobile phase ionic strength or polarity (addition of acetonitrile). The detection wavelength (210 or 280 nm) affects strongly the EPS chromatogram. For a sludge originating from the same type of biofilms (i.e., anaerobic granules), the differences in EPS fingerprints are mainly due to differences in the absorbance of the chromatographic peaks, linked to EPS molecules content and composition. The EPS fingerprint changes significantly when the EPS originate from another type of anaerobic sludges. In addition, EPS fingerprints were affected by the extraction method used (centrifugation only; heat and centrifugation or cationic exchange resin and centrifugation). This phenomenon was observed mainly for the largest and smallest molecules and molecules which display interactions with column packing.
从三种颗粒状和一种絮凝状厌氧污泥中提取的胞外聚合物(EPS),通过尺寸排阻色谱法(SEC)进行表征,使用两个串联的色谱柱,以获得更详细的色谱图。使用了来自安玛西亚生物科学公司的Superdex肽10/300 GL(0.1 - 7 kDa)和Superdex 200 10/300 GL(10 - 600 kDa),流动相为pH 7、离子强度为0.223 M(50 mM磷酸盐缓冲液和150 mM氯化钠)。一部分EPS分子与柱填料存在疏水和/或离子相互作用。通过改变流动相离子强度或极性(添加乙腈)可以改变这些相互作用。检测波长(210或280 nm)对EPS色谱图有很大影响。对于源自同一类型生物膜(即厌氧颗粒)的污泥,EPS指纹图谱的差异主要归因于色谱峰吸光度的差异,这与EPS分子的含量和组成有关。当EPS源自另一种类型的厌氧污泥时,EPS指纹图谱会发生显著变化。此外,EPS指纹图谱还受到所使用的提取方法(仅离心;加热和离心或阳离子交换树脂和离心)的影响。这种现象主要在最大和最小的分子以及与柱填料有相互作用的分子中观察到。