Please use this identifier to cite or link to this item: doi:10.22028/D291-48619
Title: The Effect of Toothpaste Suspensions on the Formation of Oral Biofilms In Situ
Author(s): Gund, Madline Priska
Lehnertz, Lea
Hannig, Matthias
Dudek, Johanna
Pütz, Norbert
Rupf, Stefan
Language: English
Title: International Dental Journal
Volume: 76 (2026)
Issue: 1
Publisher/Platform: Elsevier
Year of Publication: 2025
Free key words: Tooth paste
Biofilm formation
Vital fluorescence
Scanning electron microscopy
DDC notations: 610 Medicine and health
Publikation type: Journal Article
Abstract: Objectives: Toothpastes are essential for oral hygiene and plaque control, yet limited data exist on their ability to inhibit biofilm formation. This study evaluated the biofilm-inhibit ing effects of four toothpastes using an in situ biofilm model. Design: Paste I contained fluoride, chlorhexidine, and aluminum lactate. Paste II added stron tium acetate and potassium chloride to Paste I. Paste III included hydroxyapatite, and Paste IV contained papain and bromelain. Controls included water, a base paste, and 0.2% chlor hexidine. Six volunteers wore acrylic splints with bovineenamelslabs and rinsedwithtooth paste suspensions at intervals over 48 hours. Biofilm coverage and bacterial viability were assessed via fluorescence microscopy using live/dead staining. Results: Results showed reduced biofilm coverage with Paste I (31%*), Paste II (29%*), Paste IV (30%*), and Paste III (40%) comparedtowater(72%)andbasepaste(47%).Chlorhexidineshowedthelowestcover age (10%). Viability of bacteria (green fluorescence) was lowest with Paste III (9%*), followed by Paste I (31%*), Paste II (28%*), and Paste IV and chlorhexidine (each 39%). Water and base paste showed higherviability (54% and 51%, respectively). Statistically significant differences were foundcomparedtowater(Mann-WhitneyU-test,*P<.05). Conclusions: Toothpastes with active ingredients significantly reduced biofilm formation and/ or viability. Paste III, containing hydroxyapatite, was particularly effective in reducing bacterial viability. Further research is needed to explore alternatives to chlorhexidine as a preservative.
DOI of the first publication: 10.1016/j.identj.2025.104018
URL of the first publication: https://doi.org/10.1016/j.identj.2025.104018
Link to this record: urn:nbn:de:bsz:291--ds-486196
hdl:20.500.11880/42485
http://dx.doi.org/10.22028/D291-48619
ISSN: 1875-595X
0020-6539
Date of registration: 26-Aug-2026
Faculty: M - Medizinische Fakultät
Department: M - Anatomie und Zellbiologie
M - Zahn-, Mund- und Kieferheilkunde
Professorship: M - Prof. Dr. Matthias Hannig
M - Prof. Dr. med. dent. Stefan Rupf
Collections:SciDok - Der Wissenschaftsserver der Universität des Saarlandes

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