Objective: To elucidate the biofilm structure of Actinomyces viscosus and the spatial distribution of exopolysaccharides in it.
Methods: The Actinomyces viscosus biofilm was made by allowing bacteria to attach to the cover glass surface. The biofilm structure and exopolysaccharides distribution at 24 hours were stained with Fluorescein, BODIPY and Calcofluor respectively and were visualized by confocal laser scanning microscopy (CLSM).
Results: Actinomyces viscosus could attach to glass surface and form a structural biofilm where bacteria were embedded in the EPS glycocalyx polymers, and characteristic microcolonies and channels were taking shape. Bacteria were sparse in the substratum area but crowd in the center. In the biofilm, the distribution of bacteria was consistent with the distribution of exopolysaccharides.
Conclusion: The findings demonstrate an important role of exopolysaccharides in the process of Actinomyces viscosus biofilm formation.
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J Inorg Biochem
November 2024
Department of Analytical and Inorganic Chemistry, Faculty of Chemistry, University of Bialystok, K. Ciołkowskiego 1K, 15-245 Białystok, Poland; Centro de Ciências e Tecnologias Nucleares, C2TN, Instituto Superior Técnico, Universidade de Lisboa, Estrada Nacional 10 (km 139.7), 2695-066 Bobadela LRS, Portugal. Electronic address:
The binding ability of 8-hydroxyquinoline-2-carboxylic acid (8-HQA) towards Ga has been investigated by ISEH (Ion Selective Electrode, glass electrode) potentiometric and UV/Vis spectrophotometric titrations in KCl at I = 0.2 mol dm and at T = 298.15 K.
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School of Dentistry, Universidad Cooperativa de Colombia, Campus Villavicencio, Villavicencio, Colombia.
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Metabolites
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Department of Physiology, DeBusk College of Osteopathic Medicine, Lincoln Memorial University, 6965 Cumberland Gap Pkwy., Harrogate, TN 37752, USA.
The oral cavity contains a vast array of microbes that contribute to the balance between oral health and disease. In addition, oral bacteria can gain access to the circulation and contribute to other diseases and chronic conditions. There are a limited number of publications available regarding the comparative lipidomics of oral bacteria and fungi involved in the construction of oral biofilms, hence our decision to study the lipidomics of representative oral bacteria and a fungus.
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Bioengineering Institute of Technology, Facultad de Medicina y Ciencias de la Salud, Universitat Internacional de Catalunya, 08195 Sant Cugat del Vallés, Spain.
Invisible orthodontic aligners are having a great impact on tooth movement in an aesthetic and effective way. Different techniques, models, and clinical aspects have been studied for their proper use. However, the aim of this research has been to determine the effect of the shaping process on mechanical properties and their bacterial behavior.
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Center for Microbial Ecology and Technology, Faculty of Bioscience Engineering, Ghent University, Gent, Belgium.
Antimicrobial resistance is one of the greatest challenges to global health. While the development of new antimicrobials can combat resistance, low profitability reduces the number of new compounds brought to market. Elucidating the mechanism of action is crucial for developing new antimicrobials.
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