Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/6661

TítuloInfluence of biofilm composition on the resistance to detachment
Autor(es)Simões, M.
Cleto, S.
Pereira, Maria Olívia
Vieira, M. J.
Palavras-chaveBiofilm behaviour
Biofilm control
Detachment
Mechanical stability
Mechanical stress
Phenotypic characterisation
Data2007
EditoraIWA Publishing
RevistaWater Science & Technology
Citação"Water Science & Technology". ISSN 0273-1223. 55:8-9 (2007) 473-480.
Resumo(s)Bacillus cereus and Pseudomonas fluorescens were used to develop monoculture biofilms in a bioreactor rotating system using a stainless steel cylinder for biofilm formation. The biofilms were allowed to grow for 7 days, exposed continuously to a Reynolds number of agitation (ReA) of 2,400. Afterwards, the biofilms were characterised in terms of respiratory activity, amount of biomass, cellular density, cellular size and total and extracellular proteins and polysaccharides. The biofilm mechanical stability was assessed by sequential submission of the biofilms to increasing ReA, respectively, 4,000, 8,100, 12,100 and 16,100. The results showed that P. fluorescens biofilms were five times more active, had a higher amount of biomass, cellular density, a reduced cellular size and a four-fold higher amount of extracellular proteins and polysaccharides than B. cereus biofilms. The application of shear stress forces higher than the one under which the biofilm was formed (ReA ¼ 2,400) caused biomass removal. The high percentage of removal occurred with the implementation of a ReA of 8,100 for both B. cereus and P. fluorescens biofilms. The total series of ReA did not give rise to total biofilm removal, as only about 76% of P. fluorescens biofilm mass and 53% of B. cereus biofilm mass were detached from the cylinders. This latter result evidences that B. cereus had a higher mechanical stability than P. fluorescens biofilms. The overall results demonstrate that P. fluorescens and B. cereus formed physiologically distinct biofilms, B. cereus biofilms mainly being constituted by cells and P. fluorescens biofilms largely constituted by extracellular proteins and polysaccharides. B. cereus biofilms had a substantially higher mechanical stability than P. fluorescens biofilms.
TipoArtigo em ata de conferência
URIhttps://hdl.handle.net/1822/6661
ISBN1843395932
DOI10.2166/wst.2007.293
ISSN0273-1223
Arbitragem científicayes
AcessoAcesso aberto
Aparece nas coleções:CEB - Publicações em Revistas/Séries Internacionais / Publications in International Journals/Series

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