Mechanical Properties of Orthodontic Cements and Their Behavior in Acidic Environments.

acidic environment mechanical properties orthodontic cements surface roughness

Journal

Materials (Basel, Switzerland)
ISSN: 1996-1944
Titre abrégé: Materials (Basel)
Pays: Switzerland
ID NLM: 101555929

Informations de publication

Date de publication:
09 Nov 2022
Historique:
received: 04 10 2022
revised: 03 11 2022
accepted: 06 11 2022
entrez: 26 11 2022
pubmed: 27 11 2022
medline: 27 11 2022
Statut: epublish

Résumé

The present research is focused on three different classes of orthodontic cements: resin composites (e.g., BracePaste); resin-modified glass ionomer RMGIC (e.g., Fuji Ortho) and resin cement (e.g., Transbond). Their mechanical properties such as compressive strength, diametral tensile strength and flexural strength were correlated with the samples' microstructures, liquid absorption, and solubility in liquid. The results show that the best compressive (100 MPa) and flexural strength (75 Mpa) was obtained by BracePaste and the best diametral tensile strength was obtained by Transbond (230 MPa). The lowestvalues were obtained by Fuji Ortho RMGIC. The elastic modulus is relatively high around 14 GPa for BracePaste, and Fuji Ortho and Transbond have only 7 GPa. The samples were also subjected to artificial saliva and tested in different acidic environments such as Coca-Cola and Red Bull. Their absorption and solubility were investigated at different times ranging from 1 day to 21 days. Fuji Ortho presents the highest liquid absorption followed by Transbond, the artificial saliva has the best absorption and Red Bull has the lowest absorption. The best resistance to the liquids was obtained by BracePaste in all environments. Coca-Cola presents values four times greater than the ones observed for artificial saliva. Solubility tests show that BracePaste is more soluble in artificial saliva, and Fuji Ortho and Transbond are more soluble in Red Bull and Coca-Cola. Scanning electron microscopy (SEM) images evidenced a compact structure for BracePaste in all environments sustaining the lower liquid absorption values. Fuji Ortho and Transbond present a fissure network allowing the liquid to carry out in-depth penetration of materials. SEM observations are in good agreement with the atomic force microscopy (AFM) results. The surface roughness decreases with the acidity increasing for BracePaste meanwhile it increases with the acidity for Fuji Ortho and Transbond. In conclusion: BracePaste is recommended for long-term orthodontic treatment for patients who regularly consume acidic beverages, Fuji Ortho is recommended for short-term orthodontic treatment for patients who regularly consume acidic beverages and Transbond is recommended for orthodontic treatment over an average time period for patients who do not regularly consume acidic beverages.

Identifiants

pubmed: 36431389
pii: ma15227904
doi: 10.3390/ma15227904
pmc: PMC9697370
pii:
doi:

Types de publication

Journal Article

Langues

eng

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Auteurs

Cristina Iosif (C)

Department of Prosthetic Dentistry and Dental Materials, "Iuliu Hatieganu" University of Medicine and Pharmacy, 32 Clinicilor Street, 400006 Cluj-Napoca, Romania.

Stanca Cuc (S)

Department of Polymer Composites, Institute of Chemistry "Raluca Ripan", University Babes-Bolyai, 30 Fantanele Street, 400294 Cluj-Napoca, Romania.

Doina Prodan (D)

Department of Polymer Composites, Institute of Chemistry "Raluca Ripan", University Babes-Bolyai, 30 Fantanele Street, 400294 Cluj-Napoca, Romania.

Marioara Moldovan (M)

Department of Polymer Composites, Institute of Chemistry "Raluca Ripan", University Babes-Bolyai, 30 Fantanele Street, 400294 Cluj-Napoca, Romania.

Ioan Petean (I)

Faculty of Chemistry and Chemical Engineering, University Babes-Bolyai, 11 Arany János Street, 400028 Cluj-Napoca, Romania.

Anca Labunet (A)

Department of Prosthetic Dentistry and Dental Materials, "Iuliu Hatieganu" University of Medicine and Pharmacy, 32 Clinicilor Street, 400006 Cluj-Napoca, Romania.

Lucian Barbu Tudoran (L)

Department of Molecular Biology and Biotechnology, Electron Microscopy Laboratory, Biology and Geology Faculty, Babes-Bolyai University, 5-7 Clinicilor Str., 400006 Cluj-Napoca, Romania.
Electron Microscopy Integrated Laboratory, National Institute for Research and Development of Isotopic and Molecular Technologies, 65-103 Donath Street, 400293 Cluj-Napoca, Romania.

Iulia Clara Badea (IC)

Dental Prevention Department, Faculty of Dental Medicine, "Iuliu Hatieganu" University of Medicine and Pharmacy, Avram Iancu 31, 400083 Cluj-Napoca, Romania.

Sorin Claudiu Man (SC)

Mother and Child Department, 3Rd Department of Paediatrics, "Iuliu Hatieganu" University of Medicine and Pharmacy, 2-4 Campeni Street, 400217 Cluj-Napoca, Romania.

Mîndra Eugenia Badea (ME)

Dental Prevention Department, Faculty of Dental Medicine, "Iuliu Hatieganu" University of Medicine and Pharmacy, Avram Iancu 31, 400083 Cluj-Napoca, Romania.

Radu Chifor (R)

Dental Prevention Department, Faculty of Dental Medicine, "Iuliu Hatieganu" University of Medicine and Pharmacy, Avram Iancu 31, 400083 Cluj-Napoca, Romania.

Classifications MeSH