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  1. Research Outputs

A Proteomic Analysis of Discolored Tooth Surfaces after the Use of 0.12% Chlorhexidine (CHX) Mouthwash and CHX Provided with an Anti-Discoloration System (ADS)

Academic Article
Publication Date:
2021
Short description:
A Proteomic Analysis of Discolored Tooth Surfaces after the Use of 0.12% Chlorhexidine (CHX) Mouthwash and CHX Provided with an Anti-Discoloration System (ADS) / Bergamini, Stefania; Bellei, Elisa; Generali, Luigi; Tomasi, Aldo; Bertoldi, Carlo. - In: MATERIALS. - ISSN 1996-1944. - 14:15(2021), pp. 4338-4338. [10.3390/ma14154338]
abstract:
Chlorhexidine (CHX) is considered the gold standard for the chemical control of bacterial plaque and is often used after surgical treatment. However, CHX employment over an extended time is responsible for side effects such as the appearance of pigmentations on the teeth and tongue; the discoloration effects are less pronounced when using a CHX-based mouthwash with added an anti-discoloration system (ADS). The aim of this study was to evaluate, using one- and two-dimensional gel electrophoresis combined with mass spectrometry, the possible proteomic changes induced by CHX and CHX+ADS in the supragingival dental sites susceptible to a discoloration effect. The tooth surface collected material (TSCM) was obtained by curettage after resective bone surgery from three groups of patients following a supportive therapy protocol in which a mechanical control was combined with placebo rinses or CHX or a CHX+ADS mouthwash. The proteomic analysis was performed before surgery (basal conditions) and four weeks after surgery when CHX was used (or not) as chemical plaque control. Changes in the TSCM proteome were only revealed following CHX treatment: glycolytic enzymes, molecular chaperones and elongation factors were identified as more expressed. These changes were not detected after CHX+ADS treatment. An ADS could directly limit TSCM forming and also the CHX antiseptic effect reduces its ability to alter bacterial cell permeability. However, Maillard's reaction produces high molecular weight molecules that change the surface properties and could facilitate bacterial adhesion.
Iris type:
Articolo su rivista
Keywords:
anti-discoloration system; chlorhexidine; dental plaque; mass spectrometry; one-dimensional gel electrophoresis; proteomics; two-dimensional gel electrophoresis
List of contributors:
Bergamini, Stefania; Bellei, Elisa; Generali, Luigi; Tomasi, Aldo; Bertoldi, Carlo
Authors of the University:
BELLEI Elisa
BERGAMINI Stefania
BERTOLDI Carlo
GENERALI Luigi
TOMASI Aldo
Handle:
https://iris.unimore.it/handle/11380/1251385
Full Text:
https://iris.unimore.it//retrieve/handle/11380/1251385/361094/Materials_2021.pdf
Published in:
MATERIALS
Journal
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