Literature DB >> 17603998

Fluorescence microscopic visualization and quantification of initial bacterial colonization on enamel in situ.

C Hannig1, M Hannig, O Rehmer, G Braun, E Hellwig, A Al-Ahmad.   

Abstract

OBJECTIVE: The acquired salivary pellicle has been defined as proteinaceous film free of bacteria. However, due to the large numbers of microorganisms existent in the oral fluids, it is conceivable that adherent bacteria are already present in the initial pellicle. The aim of this in situ study was to visualize and to quantify these bacteria.
DESIGN: Initial biofilm formation was performed on bovine enamel slabs mounted buccally on individual splints and carried in situ by six subjects for 3, 30 and 120 min, respectively. After intraoral exposure, the slabs were rinsed with saline solution and the adherent bacteria were investigated with the following fluorescence microscopic methods: staining with 4',6-diamidino-2-phenylindole (DAPI), staining of vital and nonvital bacteria with fluoresceinediacetate and ethidiumbromide (live/dead staining) and fluorescence in situ hybridization (FISH) of eubacteria and streptococci, respectively. In addition, determination of colony forming units after ultrasonically induced detachment of bacteria was performed.
RESULTS: With all the methods, bacteria were detected in the initial in situ biofilm irrespective of the formation time. The numbers of bacteria revealed high intraindividual and interindividual variability and the microorganisms were distributed randomly in small aggregates. The results of the epifluorescence microscopic techniques corresponded well. The mean number of adherent bacteria detected was in the range of 10-20x10(4)cm(-2).
CONCLUSION: Already after 3 min, adherent bacteria are present in the initial pellicle. For the first time, DAPI-staining as well as FISH have proven success for visualization of initial intraoral colonization of enamel specimens.

Entities:  

Mesh:

Year:  2007        PMID: 17603998     DOI: 10.1016/j.archoralbio.2007.05.006

Source DB:  PubMed          Journal:  Arch Oral Biol        ISSN: 0003-9969            Impact factor:   2.633


  45 in total

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Review 2.  The oral cavity--a key system to understand substratum-dependent bioadhesion on solid surfaces in man.

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4.  Targeted immobilisation of lysozyme in the enamel pellicle from different solutions.

Authors:  Christian Hannig; Bettina Spitzmüller; Wiebke Hoth-Hannig; Matthias Hannig
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5.  Microscope-based imaging platform for large-scale analysis of oral biofilms.

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7.  Microbial adhesion on novel yttria-stabilized tetragonal zirconia (Y-TZP) implant surfaces with nitrogen-doped hydrogenated amorphous carbon (a-C:H:N) coatings.

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8.  Oral biofilm architecture on natural teeth.

Authors:  Vincent Zijnge; M Barbara M van Leeuwen; John E Degener; Frank Abbas; Thomas Thurnheer; Rudolf Gmür; Hermie J M Harmsen
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9.  Change in diet and oral hygiene over an 8-week period: effects on oral health and oral biofilm.

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10.  Polymicrobial Biofilm Studies: From Basic Science to Biofilm Control.

Authors:  Hubertine Me Willems; Zhenbo Xu; Brian M Peters
Journal:  Curr Oral Health Rep       Date:  2016-01-14
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