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ID 67618
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Chandra, Janaki Department of Oral Science and Translational Research, College of Dental Medicine, Nova Southeastern University
Nakamura, Shin Department of Pathophysiology-Periodontal Science, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University
Shindo, Satoru Department of Oral Science and Translational Research, College of Dental Medicine, Nova Southeastern University
Leon, Elizabeth Department of Oral Science and Translational Research, College of Dental Medicine, Nova Southeastern University
Castellon, Maria Department of Oral Science and Translational Research, College of Dental Medicine, Nova Southeastern University
Pastore, Maria Rita Department of Oral Science and Translational Research, College of Dental Medicine, Nova Southeastern University
Heidari, Alireza Department of Oral Science and Translational Research, College of Dental Medicine, Nova Southeastern University
Witek, Lukasz Biomaterials Division, NYU Dentistry
Coelho, Paulo G. Department of Biochemistry and Molecular Biology, Miller School of Medicine, University of Miami
Nakatsuka, Toshiyuki R&D Department, Shofu Inc.
Kawai, Toshihisa Department of Oral Science and Translational Research, College of Dental Medicine, Nova Southeastern University
Abstract
Surface pre-reacted glass-ionomer (S-PRG) is a new bioactive filler utilized for the restoration of decayed teeth by its ability to release six bioactive ions that prevent the adhesion of dental plaque to the tooth surface. Since ionic liquids are reported to facilitate transepithelial penetration, we reasoned that S-PRG applied to root caries could impact the osteoclasts (OCs) in the proximal alveolar bone. Therefore, this study aimed to investigate the effect of S-PRG eluate solution on RANKL-induced OC-genesis and mineral dissolution in vitro. Using RAW264.7 cells as OC precursor cells (OPCs), TRAP staining and pit formation assays were conducted to monitor OC-genesis and mineral dissolution, respectively, while OC-genesis-associated gene expression was measured using quantitative real-time PCR (qPCR). Expression of NFATc1, a master regulator of OC differentiation, and the phosphorylation of MAPK signaling molecules were measured using Western blotting. S-PRG eluate dilutions at 1/200 and 1/400 showed no cytotoxicity to RAW264.7 cells but did significantly suppress both OC-genesis and mineral dissolution. The same concentrations of S-PRG eluate downregulated the RANKL-mediated induction of OCSTAMP and CATK mRNAs, as well as the expression of NFATc1 protein and the phosphorylation of ERK, JNK, and p38. These results demonstrate that S-PRG eluate can downregulate RANKL-induced OC-genesis and mineral dissolution, suggesting that its application to root caries might prevent alveolar bone resorption.
Keywords
S-PRG
osteoclast
hydroxyapatite
TRAP staining
bioactive filler
Published Date
2024-08-12
Publication Title
Biomedicines
Volume
volume12
Issue
issue8
Publisher
MDPI
Start Page
1835
ISSN
2227-9059
Content Type
Journal Article
language
English
OAI-PMH Set
岡山大学
Copyright Holders
© 2024 by the authors.
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PubMed ID
DOI
Web of Science KeyUT
Related Url
isVersionOf https://doi.org/10.3390/biomedicines12081835
License
https://creativecommons.org/licenses/by/4.0/
Citation
Chandra, J.; Nakamura, S.; Shindo, S.; Leon, E.; Castellon, M.; Pastore, M.R.; Heidari, A.; Witek, L.; Coelho, P.G.; Nakatsuka, T.; et al. Surface Pre-Reacted Glass-Ionomer Eluate Suppresses Osteoclastogenesis through Downregulation of the MAPK Signaling Pathway. Biomedicines 2024, 12, 1835. https://doi.org/10.3390/biomedicines12081835
Funder Name
National Institute of Dental and Craniofacial Research
NSU Farquhar Honors College
助成番号
DE-027851
DE-028715
DE-029709
DE-032907
GM145509
GM-150469