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Preparation of Nano-Apatite Grafted Glass-Fiber-Reinforced Composites for Orthodontic Application: Mechanical and In Vitro Biofilm Analysis

This study aimed to fabricate nano-hydroxyapatite (nHA) grafted/non-grafted E-glass-fiber-based (nHA/EG) and E-glass fiber (EG) orthodontic retainers and to compare their properties with commercially available retainers. Stainless-steel (SS) retainers and everStick Ortho (EST) were used as control g...

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Autores principales: Khan, Abdul Samad, Alshaia, Alaa, AlDubayan, AlAnood, Alarifi, Sundus, Alamri, Abdulaziz, Aldossary, Hanan, Ahmed, Syed Zubairuddin, Ateeq, Ijlal Shahrukh, Hakeem, Abbas Saeed, Rehman, Suriya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9142944/
https://www.ncbi.nlm.nih.gov/pubmed/35629533
http://dx.doi.org/10.3390/ma15103504
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author Khan, Abdul Samad
Alshaia, Alaa
AlDubayan, AlAnood
Alarifi, Sundus
Alamri, Abdulaziz
Aldossary, Hanan
Ahmed, Syed Zubairuddin
Ateeq, Ijlal Shahrukh
Hakeem, Abbas Saeed
Rehman, Suriya
author_facet Khan, Abdul Samad
Alshaia, Alaa
AlDubayan, AlAnood
Alarifi, Sundus
Alamri, Abdulaziz
Aldossary, Hanan
Ahmed, Syed Zubairuddin
Ateeq, Ijlal Shahrukh
Hakeem, Abbas Saeed
Rehman, Suriya
author_sort Khan, Abdul Samad
collection PubMed
description This study aimed to fabricate nano-hydroxyapatite (nHA) grafted/non-grafted E-glass-fiber-based (nHA/EG) and E-glass fiber (EG) orthodontic retainers and to compare their properties with commercially available retainers. Stainless-steel (SS) retainers and everStick Ortho (EST) were used as control groups. The retainers were evaluated with Raman spectroscopy and bonded to bovine teeth. The samples were fatigued under cyclic loading (120,000 cycles) followed by static load testing. The failure behavior was evaluated under an optical microscope and scanning electron microscope. The strain growth on the orthodontic retainers was assessed (48h and 168h) by an adhesion test using Staphylococcus aureus and Candida albicans. The characteristic peaks of resin and glass fibers were observed, and the debonding force results showed a significant difference among all of the groups. SS retainers showed the highest bonding force, whereas nHA/EG retainers showed a non-significant difference from EG and EST retainers. SS retainers’ failure mode occurred mainly at the retainer–composite interface, while breakage occurred in glass-fiber-based retainers. The strains’ adhesion to EST and EG was reduced with time. However, it was increased with nHA/EG. Fabrication of nHA/EG retainers was successfully achieved and showed better debonding force compared to other glass-fiber-based groups, whereas non-linear behavior was observed for the strains’ adhesion.
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spelling pubmed-91429442022-05-29 Preparation of Nano-Apatite Grafted Glass-Fiber-Reinforced Composites for Orthodontic Application: Mechanical and In Vitro Biofilm Analysis Khan, Abdul Samad Alshaia, Alaa AlDubayan, AlAnood Alarifi, Sundus Alamri, Abdulaziz Aldossary, Hanan Ahmed, Syed Zubairuddin Ateeq, Ijlal Shahrukh Hakeem, Abbas Saeed Rehman, Suriya Materials (Basel) Article This study aimed to fabricate nano-hydroxyapatite (nHA) grafted/non-grafted E-glass-fiber-based (nHA/EG) and E-glass fiber (EG) orthodontic retainers and to compare their properties with commercially available retainers. Stainless-steel (SS) retainers and everStick Ortho (EST) were used as control groups. The retainers were evaluated with Raman spectroscopy and bonded to bovine teeth. The samples were fatigued under cyclic loading (120,000 cycles) followed by static load testing. The failure behavior was evaluated under an optical microscope and scanning electron microscope. The strain growth on the orthodontic retainers was assessed (48h and 168h) by an adhesion test using Staphylococcus aureus and Candida albicans. The characteristic peaks of resin and glass fibers were observed, and the debonding force results showed a significant difference among all of the groups. SS retainers showed the highest bonding force, whereas nHA/EG retainers showed a non-significant difference from EG and EST retainers. SS retainers’ failure mode occurred mainly at the retainer–composite interface, while breakage occurred in glass-fiber-based retainers. The strains’ adhesion to EST and EG was reduced with time. However, it was increased with nHA/EG. Fabrication of nHA/EG retainers was successfully achieved and showed better debonding force compared to other glass-fiber-based groups, whereas non-linear behavior was observed for the strains’ adhesion. MDPI 2022-05-13 /pmc/articles/PMC9142944/ /pubmed/35629533 http://dx.doi.org/10.3390/ma15103504 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Khan, Abdul Samad
Alshaia, Alaa
AlDubayan, AlAnood
Alarifi, Sundus
Alamri, Abdulaziz
Aldossary, Hanan
Ahmed, Syed Zubairuddin
Ateeq, Ijlal Shahrukh
Hakeem, Abbas Saeed
Rehman, Suriya
Preparation of Nano-Apatite Grafted Glass-Fiber-Reinforced Composites for Orthodontic Application: Mechanical and In Vitro Biofilm Analysis
title Preparation of Nano-Apatite Grafted Glass-Fiber-Reinforced Composites for Orthodontic Application: Mechanical and In Vitro Biofilm Analysis
title_full Preparation of Nano-Apatite Grafted Glass-Fiber-Reinforced Composites for Orthodontic Application: Mechanical and In Vitro Biofilm Analysis
title_fullStr Preparation of Nano-Apatite Grafted Glass-Fiber-Reinforced Composites for Orthodontic Application: Mechanical and In Vitro Biofilm Analysis
title_full_unstemmed Preparation of Nano-Apatite Grafted Glass-Fiber-Reinforced Composites for Orthodontic Application: Mechanical and In Vitro Biofilm Analysis
title_short Preparation of Nano-Apatite Grafted Glass-Fiber-Reinforced Composites for Orthodontic Application: Mechanical and In Vitro Biofilm Analysis
title_sort preparation of nano-apatite grafted glass-fiber-reinforced composites for orthodontic application: mechanical and in vitro biofilm analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9142944/
https://www.ncbi.nlm.nih.gov/pubmed/35629533
http://dx.doi.org/10.3390/ma15103504
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