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Cryo-Scanning Electron Microscopy (SEM) and Scanning Transmission Electron Microscopy (STEM)-in-SEM for Bio- and Organo-Mineral Interface Characterization in the Environment.
Wille, Guillaume; Hellal, Jennifer; Ollivier, Patrick; Richard, Annie; Burel, Agnes; Jolly, Louis; Crampon, Marc; Michel, Caroline.
Affiliation
  • Wille G; 1BRGM,3 avenue Claude Guillemin,BP 36009,45060 Orleans Cedex 2,France.
  • Hellal J; 1BRGM,3 avenue Claude Guillemin,BP 36009,45060 Orleans Cedex 2,France.
  • Ollivier P; 1BRGM,3 avenue Claude Guillemin,BP 36009,45060 Orleans Cedex 2,France.
  • Richard A; 2CME,University of Orleans,1 Rue de Chartres,BP 6759,45067 Orleans Cedex 2,France.
  • Burel A; 3MRIC TEM BIOSIT,University of Rennes,1-2 avenue du Pr Léon Bernard,CS 34317,35043 Rennes Cedex,France.
  • Jolly L; 1BRGM,3 avenue Claude Guillemin,BP 36009,45060 Orleans Cedex 2,France.
  • Crampon M; 1BRGM,3 avenue Claude Guillemin,BP 36009,45060 Orleans Cedex 2,France.
  • Michel C; 1BRGM,3 avenue Claude Guillemin,BP 36009,45060 Orleans Cedex 2,France.
Microsc Microanal ; 23(6): 1159-1172, 2017 12.
Article in En | MEDLINE | ID: mdl-29143694
Understanding biofilm interactions with surrounding substratum and pollutants/particles can benefit from the application of existing microscopy tools. Using the example of biofilm interactions with zero-valent iron nanoparticles (nZVI), this study aims to apply various approaches in biofilm preparation and labeling for fluorescent or electron microscopy and energy dispersive X-ray spectrometry (EDS) microanalysis for accurate observations. According to the targeted microscopy method, biofilms were sampled as flocs or attached biofilm, submitted to labeling using 4',6-diamidino-2-phenylindol, lectins PNA and ConA coupled to fluorescent dye or gold nanoparticles, and prepared for observation (fixation, cross-section, freezing, ultramicrotomy). Fluorescent microscopy revealed that nZVI were embedded in the biofilm structure as aggregates but the resolution was insufficient to observe individual nZVI. Cryo-scanning electron microscopy (SEM) observations showed nZVI aggregates close to bacteria, but it was not possible to confirm direct interactions between nZVI and cell membranes. Scanning transmission electron microscopy in the SEM (STEM-in-SEM) showed that nZVI aggregates could enter the biofilm to a depth of 7-11 µm. Bacteria were surrounded by a ring of extracellular polymeric substances (EPS) preventing direct nZVI/membrane interactions. STEM/EDS mapping revealed a co-localization of nZVI aggregates with lectins suggesting a potential role of EPS in nZVI embedding. Thus, the combination of divergent microscopy approaches is a good approach to better understand and characterize biofilm/metal interactions.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Microsc Microanal Year: 2017 Type: Article Affiliation country: France

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Microsc Microanal Year: 2017 Type: Article Affiliation country: France