Dental Materials Incorporated with Nanometals and Their Effect on the Bacterial Growth of Staphylococcus aureus

Rabeah Yousef Rawashdeh,1 Reyad Sawafta,2 Hanan I Malkawi1 1Department of Biological Sciences, Faculty of Science, Yarmouk University, Irbid, Jordan; 2QuarTek Corporation, Asheboro, NC 27203, USACorrespondence: Rabeah Yousef RawashdehYarmouk University, Shafiq Irshidat Street, Irbid 21163, JordanTel...

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Main Authors: Rawashdeh RY, Sawafta R, Malkawi HI
Format: Article
Language:English
Published: Dove Medical Press 2020-06-01
Series:International Journal of Nanomedicine
Subjects:
Online Access:https://www.dovepress.com/dental-materials-incorporated-with-nanometals-and-their-effect-on-the--peer-reviewed-article-IJN
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spelling doaj-3753da1447f04ce0a42067b10ae916a62020-11-25T03:26:30ZengDove Medical PressInternational Journal of Nanomedicine1178-20132020-06-01Volume 154325433154622Dental Materials Incorporated with Nanometals and Their Effect on the Bacterial Growth of Staphylococcus aureusRawashdeh RYSawafta RMalkawi HIRabeah Yousef Rawashdeh,1 Reyad Sawafta,2 Hanan I Malkawi1 1Department of Biological Sciences, Faculty of Science, Yarmouk University, Irbid, Jordan; 2QuarTek Corporation, Asheboro, NC 27203, USACorrespondence: Rabeah Yousef RawashdehYarmouk University, Shafiq Irshidat Street, Irbid 21163, JordanTel +962-2-721-1111Email rawashdehrabeah@yu.edu.joPurpose: The purpose of this study was to investigate the effect of different commercially used dental materials (RelyX Luting Plus and Dyract Extra) mixed with either a metallic ionic solution or a colloidal suspension of metallic nanoparticles. Both the solution and the suspension contained a mixture of silver, copper, and lithium ions.Methods: The metal/ion-incorporated dental materials were prepared into disk-shaped samples and tested against the growth of Staphylococcus aureus. The susceptibility of bacteria against the antibacterial dental disks was tested using two methods: counting the colony-forming units per milliliter and disk diffusion (Kirby–Bauer). The incorporated materials (Dyract and Rely cement) were tested for ion release using flame atomic absorption spectroscopy.Results: Assessment showed efficient antibacterial activity of metal ion–incorporated Rely luting cement, exhibited by the formation of inhibition zones larger than those formed by the standard antibiotic, as well as a reduction in bacterial number of sevenfold after incubation for 24 hours. Dyract material incorporated with nanoparticles showed no significant clear zones and had no inhibiting effect on bacterial colony numbers after incubation for 24 hours. The release of silver, copper, and lithium metal ions depended on the type of both dental material and the incorporated nanoagents. The metal ion–incorporated Rely Plus cement released the highest levels of metal ions, which was attributed to its antibacterial efficiency.Conclusion: Rely Plus cement incorporated with the nanoparticle suspension demonstrated high antibacterial potency, due to the release of the highest concentrations of silver, copper, and lithium metal ions. This work is the first direct comparative study of dental materials with different forms of nanomixtures (metallic nanoparticles and soluble metallic ions) and their antibacterial effects after incubation with bacterial culture for 24 hours.Keywords: RelyX Luting Plus, Dyract Extra, metallic ionic solution, suspension of metallic nanoparticles, antibacterial activityhttps://www.dovepress.com/dental-materials-incorporated-with-nanometals-and-their-effect-on-the--peer-reviewed-article-IJNrely xtm luting plusdyract®extrametallic ionic solutionsuspension of metallic nanoparticles. antibacterial activity
collection DOAJ
language English
format Article
sources DOAJ
author Rawashdeh RY
Sawafta R
Malkawi HI
spellingShingle Rawashdeh RY
Sawafta R
Malkawi HI
Dental Materials Incorporated with Nanometals and Their Effect on the Bacterial Growth of Staphylococcus aureus
International Journal of Nanomedicine
rely xtm luting plus
dyract®extra
metallic ionic solution
suspension of metallic nanoparticles. antibacterial activity
author_facet Rawashdeh RY
Sawafta R
Malkawi HI
author_sort Rawashdeh RY
title Dental Materials Incorporated with Nanometals and Their Effect on the Bacterial Growth of Staphylococcus aureus
title_short Dental Materials Incorporated with Nanometals and Their Effect on the Bacterial Growth of Staphylococcus aureus
title_full Dental Materials Incorporated with Nanometals and Their Effect on the Bacterial Growth of Staphylococcus aureus
title_fullStr Dental Materials Incorporated with Nanometals and Their Effect on the Bacterial Growth of Staphylococcus aureus
title_full_unstemmed Dental Materials Incorporated with Nanometals and Their Effect on the Bacterial Growth of Staphylococcus aureus
title_sort dental materials incorporated with nanometals and their effect on the bacterial growth of staphylococcus aureus
publisher Dove Medical Press
series International Journal of Nanomedicine
issn 1178-2013
publishDate 2020-06-01
description Rabeah Yousef Rawashdeh,1 Reyad Sawafta,2 Hanan I Malkawi1 1Department of Biological Sciences, Faculty of Science, Yarmouk University, Irbid, Jordan; 2QuarTek Corporation, Asheboro, NC 27203, USACorrespondence: Rabeah Yousef RawashdehYarmouk University, Shafiq Irshidat Street, Irbid 21163, JordanTel +962-2-721-1111Email rawashdehrabeah@yu.edu.joPurpose: The purpose of this study was to investigate the effect of different commercially used dental materials (RelyX Luting Plus and Dyract Extra) mixed with either a metallic ionic solution or a colloidal suspension of metallic nanoparticles. Both the solution and the suspension contained a mixture of silver, copper, and lithium ions.Methods: The metal/ion-incorporated dental materials were prepared into disk-shaped samples and tested against the growth of Staphylococcus aureus. The susceptibility of bacteria against the antibacterial dental disks was tested using two methods: counting the colony-forming units per milliliter and disk diffusion (Kirby–Bauer). The incorporated materials (Dyract and Rely cement) were tested for ion release using flame atomic absorption spectroscopy.Results: Assessment showed efficient antibacterial activity of metal ion–incorporated Rely luting cement, exhibited by the formation of inhibition zones larger than those formed by the standard antibiotic, as well as a reduction in bacterial number of sevenfold after incubation for 24 hours. Dyract material incorporated with nanoparticles showed no significant clear zones and had no inhibiting effect on bacterial colony numbers after incubation for 24 hours. The release of silver, copper, and lithium metal ions depended on the type of both dental material and the incorporated nanoagents. The metal ion–incorporated Rely Plus cement released the highest levels of metal ions, which was attributed to its antibacterial efficiency.Conclusion: Rely Plus cement incorporated with the nanoparticle suspension demonstrated high antibacterial potency, due to the release of the highest concentrations of silver, copper, and lithium metal ions. This work is the first direct comparative study of dental materials with different forms of nanomixtures (metallic nanoparticles and soluble metallic ions) and their antibacterial effects after incubation with bacterial culture for 24 hours.Keywords: RelyX Luting Plus, Dyract Extra, metallic ionic solution, suspension of metallic nanoparticles, antibacterial activity
topic rely xtm luting plus
dyract®extra
metallic ionic solution
suspension of metallic nanoparticles. antibacterial activity
url https://www.dovepress.com/dental-materials-incorporated-with-nanometals-and-their-effect-on-the--peer-reviewed-article-IJN
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