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Appl. Environ. Microbiol., Dec 1995, 4357-4361, Vol 61, No. 12
G Fleminger and Y Shabtai
A fluorimetric assay which enables direct and accurate analysis of the
adhesion of bacteria to solid particles was developed. The assay is based
on labeling of the bacteria with fluorescamine, which reacts with primary
amino groups on the cell surface to yield a yellow fluorescence that is
easily detectable by both fluorescence microscopy and spectrofluorimetry.
As an example, fluorescent labeling of Rhodococcus strain GIN-1 (NCIMB
40340) cells enabled the detection and quantitative determination of their
adsorption to TiO(inf2) and coal fly ash particles. Exposure of the cells
to 10% acetone during the labeling reaction affected neither their
viability nor their ability to adhere to these particles. Only a small
fraction (^sim2%) of the total cell protein was labeled by fluorescamine
upon staining of intact bacterial cells, which may indicate preferential
labeling of certain proteins. Specificity studies carried out with the
fluorescence assay confirmed previous findings that Rhodococcus strain
GIN-1 cells possess high affinities for TiO(inf2), ZnO, and coal fly ash
and low affinities for other metal oxides. In principle, the newly
developed fluorimetric assay may be used for determination of cell adhesion
to any solid matrix by either microscopic examination or epifluorescence
measurements. In the present work, the adhesion of several other
microorganisms to TiO(inf2) particles was tested as well, but their ability
to adhere to these particles was significantly lower than that of
Rhodococcus strain GIN-1 cells.
Copyright © 1995, American Society for Microbiology
Direct and Rapid Analysis of the Adhesion of Bacteria to Solid Surfaces: Interaction of Fluorescently Labeled Rhodococcus Strain GIN-1 (NCIMB 40340) Cells with Titanium-Rich Particles
Department of Molecular Microbiology and Biotechnology, Tel-Aviv University, Ramat-Aviv 69978, and Program for Biotechnology, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel
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