Literature DB >> 2107796

Kinetics of Pseudomonas aeruginosa adhesion to 304 and 316-L stainless steel: role of cell surface hydrophobicity.

E Vanhaecke1, J P Remon, M Moors, F Raes, D De Rudder, A Van Peteghem.   

Abstract

Fifteen different isolates of Pseudomonas aeruginosa were used to study the kinetics of adhesion to 304 and 316-L stainless steel. Stainless steel plates were incubated with approximately 1.5 X 10(7) CFU/ml in 0.01 M phosphate-buffered saline (pH 7.4). After the plates were rinsed with the buffer, the number of adhering bacteria was determined by a bioluminescence assay. Measurable adhesion, even to the electropolished surfaces, occurred within 30 s. Bacterial cell surface hydrophobicity, as determined by the bacterial adherence to hydrocarbons test and the contact angle measurement test, was the major parameter influencing the adhesion rate constant for the first 30 min of adhesion. A parabolic relationship between the CAM values and the logarithm of the adhesion rate constants (In k) was established. No correlation between either the salt aggregation or the improved salt aggregation values and the bacterial adhesion rate constants could be found. Since there was no significant correlation between the bacterial electrophoretic mobilities and the In k values, the bacterial cell surface charge seemed of minor importance in the process of adhesion of P. aeruginosa to 304 and 316-L stainless steel.

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Year:  1990        PMID: 2107796      PMCID: PMC183422          DOI: 10.1128/aem.56.3.788-795.1990

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  27 in total

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3.  Attachment as a factor in the protection of Enterobacter cloacae from chlorination.

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4.  The surface free energy of oral streptococci after being coated with saliva and its relation to adhesion in the mouth.

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5.  Bacterial conductivity in the determination of surface charge by microelectrophoresis.

Authors:  C W Einolf; E L Carstensen
Journal:  Biochim Biophys Acta       Date:  1967-11-28

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Authors:  S J Lewis; A Gilmour
Journal:  J Appl Bacteriol       Date:  1987-04

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8.  Cell-surface hydrophobicity of Candida species as determined by the contact-angle and hydrocarbon-adherence methods.

Authors:  S Minagi; Y Miyake; Y Fujioka; H Tsuru; H Suginaka
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9.  Adhesion of Staphylococcus epidermidis and Staphylococcus saprophyticus to a hydrophobic biomaterial.

Authors:  A H Hogt; J Dankert; J Feijen
Journal:  J Gen Microbiol       Date:  1985-09

10.  A new test based on 'salting out' to measure relative surface hydrophobicity of bacterial cells.

Authors:  M Lindahl; A Faris; T Wadström; S Hjertén
Journal:  Biochim Biophys Acta       Date:  1981-11-05
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  19 in total

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5.  Influence of a Rhamnolipid Biosurfactant on the Transport of Bacteria through a Sandy Soil.

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8.  Biofilm formation on reverse osmosis membranes is initiated and dominated by Sphingomonas spp.

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10.  Relationship between the cell surface hydrophobicity and survival of bacteria Zymomonas mobilis after exposures to ethanol, freezing or freeze-drying.

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Journal:  J Ind Microbiol Biotechnol       Date:  2008-08-09       Impact factor: 3.346

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