Growth and Detachment of Cell Clusters from Mature Mixed-Species Biofilms

Author:

Stoodley Paul123,Wilson Suzanne2,Hall-Stoodley Luanne2,Boyle John D.3,Lappin-Scott Hilary M.4,Costerton J. W.2

Affiliation:

1. Civil Engineering1 and

2. Center for Biofilm Engineering,2 Montana State University—Bozeman, Bozeman, Montana 59717-3980, and

3. School of Engineering and Computer Science, Exeter University, Exeter EX4 4QF,3 and

4. Hatherly Laboratories, School of Biology, Exeter University, Exeter EX4 4PS,4 United Kingdom

Abstract

ABSTRACT Detachment from biofilms is an important consideration in the dissemination of infection and the contamination of industrial systems but is the least-studied biofilm process. By using digital time-lapse microscopy and biofilm flow cells, we visualized localized growth and detachment of discrete cell clusters in mature mixed-species biofilms growing under steady conditions in turbulent flow in situ. The detaching biomass ranged from single cells to an aggregate with a diameter of approximately 500 μm. Direct evidence of local cell cluster detachment from the biofilms was supported by microscopic examination of filtered effluent. Single cells and small clusters detached more frequently, but larger aggregates contained a disproportionately high fraction of total detached biomass. These results have significance in the establishment of an infectious dose and public health risk assessment.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference19 articles.

1. Biofilm thickness measurements by light-microscopy.;Bakke R.;J. Microbiol. Methods,1986

2. Spatial and Temporal Variations in Chitinolytic Gene Expression and Bacterial Biomass Production during Chitin Degradation

3. Modeling biofilm accumulation;Bryers J. D.;Physiological models in microbiology,1988

4. Characklis W. G. Biofilm processes Biofilms. Characklis W. G. Marshall K. C. 1990 195 231 John Wiley & Sons Inc. New York N.Y

5. Diversity in surface colonization behavior in marine bacteria.;Dalton H. M.;J. Ind. Microbiol.,1996

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