Cytotoxicity of three commercial orthodontic elastomeric ligature brands

This study aimed to evaluate cytotoxicity of three commercial brands of orthodontic elastomeric ligatures. Materials and Methods: The three commercial orthodontic elastomeric ligature brands were C-brand, T-brand and U-brand from different manufacturing countries. The cytotoxic assay was performed u...

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Main Authors: Tua-ngam Peerapong, Jira-anankul Nittaya, Anuwongnukroh Niwat, Dechkunakorn Surachai, Laokijcharoen Pasaree
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201710806004
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spelling doaj-885d2630b661471a90eb1a086c717e882021-02-02T00:36:36ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011080600410.1051/matecconf/201710806004matecconf_icmaa2017_06004Cytotoxicity of three commercial orthodontic elastomeric ligature brandsTua-ngam Peerapong0Jira-anankul Nittaya1Anuwongnukroh Niwat2Dechkunakorn SurachaiLaokijcharoen Pasaree3Research Office, Faculty of Dentistry, Mahidol UniversityPostgraduate student of specialty training program in Orthodontics, Faculty of Dentistry, Mahidol UniversityDepartment of Orthodontics, Faculty of DentistryNational Metal and Materials Technology Center, National Science and Technology Development Agency, Ministry of Science and TechnologyThis study aimed to evaluate cytotoxicity of three commercial brands of orthodontic elastomeric ligatures. Materials and Methods: The three commercial orthodontic elastomeric ligature brands were C-brand, T-brand and U-brand from different manufacturing countries. The cytotoxic assay was performed using cell cultures (L929) which were subjected to the cell viability test with methyl-tetrazolium (MTT). The L929 cell line was grown in 96-well tissue culture plates (1×105 cells/cm3). Elastomeric ligatures (0.2 g) from each brand was placed in 1 ml of Minimum Essential Medium (MEM) at 37°C with 5% CO2 at 100% humidity in an incubator for 24 hours. After incubation, the cell mitochondrial activity was evaluated by the MTT test for detecting viable cells from optical density according to ISO 10993-5: 2009 (E) test procedure. Cytotoxic effects were determined by the percentage of cell viability. Results: Microscopic investigation showed that all commercial elastomeric ligatures caused alterations in the fibroblast cell morphology from an elongated to a spherical form. The cell viability of C-brand, T-brand and U-brand were 51.10, 73.04 and 93.04%, respectively. Conclusion: T-brand and U-brand orthodontic elastomeric ligatures were non cytotoxic potential. U-brand had the greatest cell viability and C-brand had the lowest cell viability at 24 hours.https://doi.org/10.1051/matecconf/201710806004
collection DOAJ
language English
format Article
sources DOAJ
author Tua-ngam Peerapong
Jira-anankul Nittaya
Anuwongnukroh Niwat
Dechkunakorn Surachai
Laokijcharoen Pasaree
spellingShingle Tua-ngam Peerapong
Jira-anankul Nittaya
Anuwongnukroh Niwat
Dechkunakorn Surachai
Laokijcharoen Pasaree
Cytotoxicity of three commercial orthodontic elastomeric ligature brands
MATEC Web of Conferences
author_facet Tua-ngam Peerapong
Jira-anankul Nittaya
Anuwongnukroh Niwat
Dechkunakorn Surachai
Laokijcharoen Pasaree
author_sort Tua-ngam Peerapong
title Cytotoxicity of three commercial orthodontic elastomeric ligature brands
title_short Cytotoxicity of three commercial orthodontic elastomeric ligature brands
title_full Cytotoxicity of three commercial orthodontic elastomeric ligature brands
title_fullStr Cytotoxicity of three commercial orthodontic elastomeric ligature brands
title_full_unstemmed Cytotoxicity of three commercial orthodontic elastomeric ligature brands
title_sort cytotoxicity of three commercial orthodontic elastomeric ligature brands
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2017-01-01
description This study aimed to evaluate cytotoxicity of three commercial brands of orthodontic elastomeric ligatures. Materials and Methods: The three commercial orthodontic elastomeric ligature brands were C-brand, T-brand and U-brand from different manufacturing countries. The cytotoxic assay was performed using cell cultures (L929) which were subjected to the cell viability test with methyl-tetrazolium (MTT). The L929 cell line was grown in 96-well tissue culture plates (1×105 cells/cm3). Elastomeric ligatures (0.2 g) from each brand was placed in 1 ml of Minimum Essential Medium (MEM) at 37°C with 5% CO2 at 100% humidity in an incubator for 24 hours. After incubation, the cell mitochondrial activity was evaluated by the MTT test for detecting viable cells from optical density according to ISO 10993-5: 2009 (E) test procedure. Cytotoxic effects were determined by the percentage of cell viability. Results: Microscopic investigation showed that all commercial elastomeric ligatures caused alterations in the fibroblast cell morphology from an elongated to a spherical form. The cell viability of C-brand, T-brand and U-brand were 51.10, 73.04 and 93.04%, respectively. Conclusion: T-brand and U-brand orthodontic elastomeric ligatures were non cytotoxic potential. U-brand had the greatest cell viability and C-brand had the lowest cell viability at 24 hours.
url https://doi.org/10.1051/matecconf/201710806004
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AT jiraanankulnittaya cytotoxicityofthreecommercialorthodonticelastomericligaturebrands
AT anuwongnukrohniwat cytotoxicityofthreecommercialorthodonticelastomericligaturebrands
AT dechkunakornsurachai cytotoxicityofthreecommercialorthodonticelastomericligaturebrands
AT laokijcharoenpasaree cytotoxicityofthreecommercialorthodonticelastomericligaturebrands
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