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Mesoporous Calcium-Silicate Nanoparticles Loaded with Low-Dose Triton-100+Ag(+) to Achieve Both Enhanced Antibacterial Properties and Low Cytotoxicity for Dentin Disinfection of Human Teeth

Mesoporous calcium-silicate nanoparticles (MCSNs) are excellent biomaterials for controlled drug delivery and mineralization induction. In this study, MCSNs were loaded with low-dose silver ion (Ag(+)) and Triton X-100 (TX-100) as the M-AgTX to achieve both enhanced antibacterial properties and low...

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Autores principales: Duan, Mengting, Fan, Wei, Fan, Bing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8464954/
https://www.ncbi.nlm.nih.gov/pubmed/34575596
http://dx.doi.org/10.3390/pharmaceutics13091518
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author Duan, Mengting
Fan, Wei
Fan, Bing
author_facet Duan, Mengting
Fan, Wei
Fan, Bing
author_sort Duan, Mengting
collection PubMed
description Mesoporous calcium-silicate nanoparticles (MCSNs) are excellent biomaterials for controlled drug delivery and mineralization induction. In this study, MCSNs were loaded with low-dose silver ion (Ag(+)) and Triton X-100 (TX-100) as the M-AgTX to achieve both enhanced antibacterial properties and low cytotoxicity for dentin disinfection. The physicochemical property, biocompatibility, infiltration ability into dentinal tubules, anti-bacterial ability against both planktonic Enterococcus faecalis (E. faecalis) and its biofilm on dentin, effects on dentin microhardness and in vitro mineralization property were systematically investigated. Results confirmed that the MCSNs and M-AgTX nanoparticles showed typical morphology of mesoporous materials and exhibited sustained release of chemicals with an alkaline pH value over time. M-AgTX also exhibited excellent biocompatibility on MC3T3-E1 cells and could eliminate 100% planktonic E. faecalis after 48-h treatment. On dentin slices, it could enter dentinal tubules by ultrasonic activation and inhibit the growth of E. faecalis on dentin. M-AgTX could completely inactive 28-day E. faecalis biofilm. TEM confirmed the destruction of cell membrane integrity and Ag(+) infiltration into bacteria by M-AgTX. Besides, dentin slices medicated with M-AgTX nanoparticles displayed an increased microhardness. After being immersed in SBF for 7 days, apatite crystals could be observed on the surface of the material tablets. M-AgTX could be developed into a new multifunctional intra-canal medication or bone defect filling material for infected bone defects due to its sustained release profile, low cytotoxicity, infiltration ability, enhanced anti-bacterial and mineralization features.
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spelling pubmed-84649542021-09-27 Mesoporous Calcium-Silicate Nanoparticles Loaded with Low-Dose Triton-100+Ag(+) to Achieve Both Enhanced Antibacterial Properties and Low Cytotoxicity for Dentin Disinfection of Human Teeth Duan, Mengting Fan, Wei Fan, Bing Pharmaceutics Article Mesoporous calcium-silicate nanoparticles (MCSNs) are excellent biomaterials for controlled drug delivery and mineralization induction. In this study, MCSNs were loaded with low-dose silver ion (Ag(+)) and Triton X-100 (TX-100) as the M-AgTX to achieve both enhanced antibacterial properties and low cytotoxicity for dentin disinfection. The physicochemical property, biocompatibility, infiltration ability into dentinal tubules, anti-bacterial ability against both planktonic Enterococcus faecalis (E. faecalis) and its biofilm on dentin, effects on dentin microhardness and in vitro mineralization property were systematically investigated. Results confirmed that the MCSNs and M-AgTX nanoparticles showed typical morphology of mesoporous materials and exhibited sustained release of chemicals with an alkaline pH value over time. M-AgTX also exhibited excellent biocompatibility on MC3T3-E1 cells and could eliminate 100% planktonic E. faecalis after 48-h treatment. On dentin slices, it could enter dentinal tubules by ultrasonic activation and inhibit the growth of E. faecalis on dentin. M-AgTX could completely inactive 28-day E. faecalis biofilm. TEM confirmed the destruction of cell membrane integrity and Ag(+) infiltration into bacteria by M-AgTX. Besides, dentin slices medicated with M-AgTX nanoparticles displayed an increased microhardness. After being immersed in SBF for 7 days, apatite crystals could be observed on the surface of the material tablets. M-AgTX could be developed into a new multifunctional intra-canal medication or bone defect filling material for infected bone defects due to its sustained release profile, low cytotoxicity, infiltration ability, enhanced anti-bacterial and mineralization features. MDPI 2021-09-19 /pmc/articles/PMC8464954/ /pubmed/34575596 http://dx.doi.org/10.3390/pharmaceutics13091518 Text en © 2021 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
Duan, Mengting
Fan, Wei
Fan, Bing
Mesoporous Calcium-Silicate Nanoparticles Loaded with Low-Dose Triton-100+Ag(+) to Achieve Both Enhanced Antibacterial Properties and Low Cytotoxicity for Dentin Disinfection of Human Teeth
title Mesoporous Calcium-Silicate Nanoparticles Loaded with Low-Dose Triton-100+Ag(+) to Achieve Both Enhanced Antibacterial Properties and Low Cytotoxicity for Dentin Disinfection of Human Teeth
title_full Mesoporous Calcium-Silicate Nanoparticles Loaded with Low-Dose Triton-100+Ag(+) to Achieve Both Enhanced Antibacterial Properties and Low Cytotoxicity for Dentin Disinfection of Human Teeth
title_fullStr Mesoporous Calcium-Silicate Nanoparticles Loaded with Low-Dose Triton-100+Ag(+) to Achieve Both Enhanced Antibacterial Properties and Low Cytotoxicity for Dentin Disinfection of Human Teeth
title_full_unstemmed Mesoporous Calcium-Silicate Nanoparticles Loaded with Low-Dose Triton-100+Ag(+) to Achieve Both Enhanced Antibacterial Properties and Low Cytotoxicity for Dentin Disinfection of Human Teeth
title_short Mesoporous Calcium-Silicate Nanoparticles Loaded with Low-Dose Triton-100+Ag(+) to Achieve Both Enhanced Antibacterial Properties and Low Cytotoxicity for Dentin Disinfection of Human Teeth
title_sort mesoporous calcium-silicate nanoparticles loaded with low-dose triton-100+ag(+) to achieve both enhanced antibacterial properties and low cytotoxicity for dentin disinfection of human teeth
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8464954/
https://www.ncbi.nlm.nih.gov/pubmed/34575596
http://dx.doi.org/10.3390/pharmaceutics13091518
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