Addition of Bioactive Glass Decreases Setting Time and Improves Antibacterial Properties of Mineral Trioxide Aggregate

This study aimed to assess the effect of addition of bioactive glass (BG) on the setting time and antibacterial activity of mineral trioxide aggregate (MTA) against Enterococcus faecalis (E. faecalis). In this in vitro study, BG was synthesized by the sol-gel technique and added to MTA powder in cer...

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Published in:International journal of biomaterials Vol. 2024; no. 1; p. 4190647
Main Authors: Milani, Amin Salem, Hadinia, Faezeh, Rezaei, Yashar, Soroush Barhaghi, Mohammad Hossein, Attari, Kamal, Nouroloyouni, Ahmad
Format: Journal Article
Language:English
Published: United States John Wiley & Sons, Inc 2024
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Abstract This study aimed to assess the effect of addition of bioactive glass (BG) on the setting time and antibacterial activity of mineral trioxide aggregate (MTA) against Enterococcus faecalis (E. faecalis). In this in vitro study, BG was synthesized by the sol-gel technique and added to MTA powder in certain ratios. Three groups of specimens were fabricated from pure MTA, MTA mixed with 10wt% BG, and MTA mixed with 20wt% BG. The setting time of specimens was measured according to ISO9917-2007. Direct contact test was used to assess the antimicrobial activity of the three groups against E. faecalis. Data were analyzed by repeated measures ANOVA (alpha = 0.05). Addition of BG (in both concentrations) to MTA decreased its setting time and improved its antibacterial activity against E. faecalis ( < 0.05). By an increase in concentration of BG (20%), the antimicrobial activity further improved ( < 0.05). Addition of BG to MTA in 10wt% and 20wt% concentrations decreased its setting time and improved its antibacterial activity against E. faecalis.
AbstractList Objectives. This study aimed to assess the effect of addition of bioactive glass (BG) on the setting time and antibacterial activity of mineral trioxide aggregate (MTA) against Enterococcus faecalis (E. faecalis). Materials and Methods. In this in vitro study, BG was synthesized by the sol-gel technique and added to MTA powder in certain ratios. Three groups of specimens were fabricated from pure MTA, MTA mixed with 10wt% BG, and MTA mixed with 20wt% BG. The setting time of specimens was measured according to ISO9917-2007. Direct contact test was used to assess the antimicrobial activity of the three groups against E. faecalis. Data were analyzed by repeated measures ANOVA (alpha = 0.05). Results. Addition of BG (in both concentrations) to MTA decreased its setting time and improved its antibacterial activity against E. faecalis (p<0.05). By an increase in concentration of BG (20%), the antimicrobial activity further improved (p<0.05). Conclusion. Addition of BG to MTA in 10wt% and 20wt% concentrations decreased its setting time and improved its antibacterial activity against E. faecalis.
This study aimed to assess the effect of addition of bioactive glass (BG) on the setting time and antibacterial activity of mineral trioxide aggregate (MTA) against Enterococcus faecalis (E. faecalis). In this in vitro study, BG was synthesized by the sol-gel technique and added to MTA powder in certain ratios. Three groups of specimens were fabricated from pure MTA, MTA mixed with 10wt% BG, and MTA mixed with 20wt% BG. The setting time of specimens was measured according to ISO9917-2007. Direct contact test was used to assess the antimicrobial activity of the three groups against E. faecalis. Data were analyzed by repeated measures ANOVA (alpha = 0.05). Addition of BG (in both concentrations) to MTA decreased its setting time and improved its antibacterial activity against E. faecalis ( < 0.05). By an increase in concentration of BG (20%), the antimicrobial activity further improved ( < 0.05). Addition of BG to MTA in 10wt% and 20wt% concentrations decreased its setting time and improved its antibacterial activity against E. faecalis.
This study aimed to assess the effect of addition of bioactive glass (BG) on the setting time and antibacterial activity of mineral trioxide aggregate (MTA) against Enterococcus faecalis (E. faecalis).ObjectivesThis study aimed to assess the effect of addition of bioactive glass (BG) on the setting time and antibacterial activity of mineral trioxide aggregate (MTA) against Enterococcus faecalis (E. faecalis).In this in vitro study, BG was synthesized by the sol-gel technique and added to MTA powder in certain ratios. Three groups of specimens were fabricated from pure MTA, MTA mixed with 10wt% BG, and MTA mixed with 20wt% BG. The setting time of specimens was measured according to ISO9917-2007. Direct contact test was used to assess the antimicrobial activity of the three groups against E. faecalis. Data were analyzed by repeated measures ANOVA (alpha = 0.05).Materials and MethodsIn this in vitro study, BG was synthesized by the sol-gel technique and added to MTA powder in certain ratios. Three groups of specimens were fabricated from pure MTA, MTA mixed with 10wt% BG, and MTA mixed with 20wt% BG. The setting time of specimens was measured according to ISO9917-2007. Direct contact test was used to assess the antimicrobial activity of the three groups against E. faecalis. Data were analyzed by repeated measures ANOVA (alpha = 0.05).Addition of BG (in both concentrations) to MTA decreased its setting time and improved its antibacterial activity against E. faecalis (p < 0.05). By an increase in concentration of BG (20%), the antimicrobial activity further improved (p < 0.05).ResultsAddition of BG (in both concentrations) to MTA decreased its setting time and improved its antibacterial activity against E. faecalis (p < 0.05). By an increase in concentration of BG (20%), the antimicrobial activity further improved (p < 0.05).Addition of BG to MTA in 10wt% and 20wt% concentrations decreased its setting time and improved its antibacterial activity against E. faecalis.ConclusionAddition of BG to MTA in 10wt% and 20wt% concentrations decreased its setting time and improved its antibacterial activity against E. faecalis.
Audience Academic
Author Milani, Amin Salem
Nouroloyouni, Ahmad
Hadinia, Faezeh
Attari, Kamal
Rezaei, Yashar
Soroush Barhaghi, Mohammad Hossein
AuthorAffiliation 4 Department of Orofacial Pain and Dysfunction, University of California, Los Angeles, CA, USA
2 Department of Dental Biomaterials, Faculty of Dentistry, Tabriz University of Medical Sciences, Tabriz, Iran
1 Endodontic Department, Faculty of Dentistry, Tabriz University of Medical Sciences, Tabriz, Iran
3 Department of Medical Bacteriology & Virology, Faculty of Medicine, Tabriz University of Medical Sciences, Tabriz, Iran
AuthorAffiliation_xml – name: 3 Department of Medical Bacteriology & Virology, Faculty of Medicine, Tabriz University of Medical Sciences, Tabriz, Iran
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  surname: Nouroloyouni
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/39376512$$D View this record in MEDLINE/PubMed
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Snippet This study aimed to assess the effect of addition of bioactive glass (BG) on the setting time and antibacterial activity of mineral trioxide aggregate (MTA)...
Objectives . This study aimed to assess the effect of addition of bioactive glass (BG) on the setting time and antibacterial activity of mineral trioxide...
Objectives. This study aimed to assess the effect of addition of bioactive glass (BG) on the setting time and antibacterial activity of mineral trioxide...
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SubjectTerms Antibacterial activity
Antibacterial agents
Antimicrobial activity
Bioglass
Biological activity
Gas industry
In vitro methods and tests
Mechanical properties
Nitrates
Physical properties
Sol-gel processes
Time measurement
Tissue engineering
Variance analysis
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Title Addition of Bioactive Glass Decreases Setting Time and Improves Antibacterial Properties of Mineral Trioxide Aggregate
URI https://www.ncbi.nlm.nih.gov/pubmed/39376512
https://www.proquest.com/docview/3091427444
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Volume 2024
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