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PMID: 31294179 Published · epublish English Journal Article

Surface conditioning with Escherichia coli cell wall components can reduce biofilm formation by decreasing initial adhesion.

AIMS microbiology ·Vol. 3 ·No. 3 ·2017-00-00 ·页码 613-628

Gomes LC, Moreira JMR, Araújo JDP, Mergulhão FJ

Abstract

Bacterial adhesion and biofilm formation on food processing surfaces pose major risks to human health. Non-efficient cleaning of equipment surfaces and piping can act as a conditioning layer that affects the development of a new biofilm post-disinfection. We have previously shown that surface conditioning with cell extracts could reduce biofilm formation. In the present work, we hypothesized that E. coli cell wall components could be implicated in this phenomena and therefore mannose, myristic acid and palmitic acid were tested as conditioning agents. To evaluate the effect of surface conditioning and flow topology on biofilm formation, assays were performed in agitated 96-well microtiter plates and in a parallel plate flow chamber (PPFC), both operated at the same average wall shear stress (0.07 Pa) as determined by computational fluid dynamics (CFD). It was observed that when the 96-well microtiter plate and the PPFC were used to form biofilms at the same shear stress, similar results were obtained. This shows that the referred hydrodynamic feature may be a good scale-up parameter from high-throughput platforms to larger scale flow cell systems as the PPFC used in this study. Mannose did not have any effect on E. coli biofilm formation, but myristic and palmitic acid inhibited biofilm development by decreasing cell adhesion (in about 50%). These results support the idea that in food processing equipment where biofilm formation is not critical below a certain threshold, bacterial lysis and adsorption of cell components to the surface may reduce biofilm buildup and extend the operational time.

Keywords
Escherichia coli biofilm computational fluid dynamics mannose microtiter plate myristic acid palmitic acid parallel plate flow chamber surface conditioning
作者与单位
共 4 位作者,点击展开单位 / ORCID
Gomes Luciana C
LEPABE-Department of Chemical Engineering, Faculty of Engineering, University of Porto, Porto, Portugal.
Moreira Joana M R
LEPABE-Department of Chemical Engineering, Faculty of Engineering, University of Porto, Porto, Portugal.
Araújo José D P
CEFT-Department of Chemical Engineering, Faculty of Engineering, University of Porto, Porto, Portugal.
Mergulhão Filipe J
LEPABE-Department of Chemical Engineering, Faculty of Engineering, University of Porto, Porto, Portugal.
Article Info
Journal
AIMS microbiology
Abbr.
AIMS Microbiol
ISSN
2471-1888
Published
2017-00-00
电子出版
2017-00-18
页码
613-628
Language
English
Country/Region
United States
NLM ID
101697141
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