Antimicrobial Property of Hydrocolloid Impression Material Incorporated with Silver Nanoparticles Against Staphylococcus Aureus

Dental impressions can easily become contaminated with patient’s blood and saliva which are capable of transmitting infectious diseases to dental personnel. The addition of antimicrobial agents into impression materials could be effective in reducing the chances of cross-infection. Silver nanopartic...

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Main Authors: Wangchuk Norbu Penden, Nisalak Passiri, Thaweboon Boonyanit, Thawboon Sroisiri, Sawaengkit Pornrachanee
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/20179501001
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spelling doaj-267178f2d65b4758a657ee05a59d9f522021-02-02T03:54:54ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-01950100110.1051/matecconf/20179501001matecconf_icmme2017_01001Antimicrobial Property of Hydrocolloid Impression Material Incorporated with Silver Nanoparticles Against Staphylococcus AureusWangchuk Norbu Penden0Nisalak Passiri1Thaweboon Boonyanit2Thawboon Sroisiri3Sawaengkit Pornrachanee4Orthodontic Department, Faculty of Dentistry, Mahidol UniversityOrthodontic Department, Faculty of Dentistry, Mahidol UniversityOral Microbiology Department, Faculty of Dentistry, Mahidol UniversityOral Microbiology Department, Faculty of Dentistry, Mahidol UniversityOrthodontic Department, Faculty of Dentistry, Mahidol UniversityDental impressions can easily become contaminated with patient’s blood and saliva which are capable of transmitting infectious diseases to dental personnel. The addition of antimicrobial agents into impression materials could be effective in reducing the chances of cross-infection. Silver nanoparticles have been applied in dentistry as a potent antimicrobial agent. This study aims to evaluate the in vitro antimicrobial efficacy of silver nanoparticles incorporated to irreversible hydrocolloid impression material against Staphylococcus aureus. Silver nanoparticles (AgZrPO4, National Direct Network Company, Thailand) at concentrations of 0.25%, 0.50%, 1.00% and 1.50% w/w were added to powder of impression materials (Kromopan, Lascod, Ilaty). Impression material samples were prepared on sterile plate in accordance with manufacturer’s instruction. After setting, a 100 microliter of S. aureus ATCC6538 suspension (106 cells/mL) were inoculated on the surface of the impression sample and left for 10 minutes. The amount of S. aureus on the surface was quantified using imprint technique on Mannitol Salt agar. Impression materials incorporated with AgZrPO4 showed antimicrobial property against S. aureus (up to 95% reduction) compared with control (impression material without AgZrPO4). Even though the mechanism of antimicrobial action was not clearly understood, AgZrPO4 incorporated to impression material was demonstrated to possess an inhibitory effect against pathogenic bacteria. Further studies are needed to investigate physical properties of the material and the clinical usage.https://doi.org/10.1051/matecconf/20179501001
collection DOAJ
language English
format Article
sources DOAJ
author Wangchuk Norbu Penden
Nisalak Passiri
Thaweboon Boonyanit
Thawboon Sroisiri
Sawaengkit Pornrachanee
spellingShingle Wangchuk Norbu Penden
Nisalak Passiri
Thaweboon Boonyanit
Thawboon Sroisiri
Sawaengkit Pornrachanee
Antimicrobial Property of Hydrocolloid Impression Material Incorporated with Silver Nanoparticles Against Staphylococcus Aureus
MATEC Web of Conferences
author_facet Wangchuk Norbu Penden
Nisalak Passiri
Thaweboon Boonyanit
Thawboon Sroisiri
Sawaengkit Pornrachanee
author_sort Wangchuk Norbu Penden
title Antimicrobial Property of Hydrocolloid Impression Material Incorporated with Silver Nanoparticles Against Staphylococcus Aureus
title_short Antimicrobial Property of Hydrocolloid Impression Material Incorporated with Silver Nanoparticles Against Staphylococcus Aureus
title_full Antimicrobial Property of Hydrocolloid Impression Material Incorporated with Silver Nanoparticles Against Staphylococcus Aureus
title_fullStr Antimicrobial Property of Hydrocolloid Impression Material Incorporated with Silver Nanoparticles Against Staphylococcus Aureus
title_full_unstemmed Antimicrobial Property of Hydrocolloid Impression Material Incorporated with Silver Nanoparticles Against Staphylococcus Aureus
title_sort antimicrobial property of hydrocolloid impression material incorporated with silver nanoparticles against staphylococcus aureus
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2017-01-01
description Dental impressions can easily become contaminated with patient’s blood and saliva which are capable of transmitting infectious diseases to dental personnel. The addition of antimicrobial agents into impression materials could be effective in reducing the chances of cross-infection. Silver nanoparticles have been applied in dentistry as a potent antimicrobial agent. This study aims to evaluate the in vitro antimicrobial efficacy of silver nanoparticles incorporated to irreversible hydrocolloid impression material against Staphylococcus aureus. Silver nanoparticles (AgZrPO4, National Direct Network Company, Thailand) at concentrations of 0.25%, 0.50%, 1.00% and 1.50% w/w were added to powder of impression materials (Kromopan, Lascod, Ilaty). Impression material samples were prepared on sterile plate in accordance with manufacturer’s instruction. After setting, a 100 microliter of S. aureus ATCC6538 suspension (106 cells/mL) were inoculated on the surface of the impression sample and left for 10 minutes. The amount of S. aureus on the surface was quantified using imprint technique on Mannitol Salt agar. Impression materials incorporated with AgZrPO4 showed antimicrobial property against S. aureus (up to 95% reduction) compared with control (impression material without AgZrPO4). Even though the mechanism of antimicrobial action was not clearly understood, AgZrPO4 incorporated to impression material was demonstrated to possess an inhibitory effect against pathogenic bacteria. Further studies are needed to investigate physical properties of the material and the clinical usage.
url https://doi.org/10.1051/matecconf/20179501001
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