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Effects of Er:YAG and Diode Laser Irradiation on Dental Pulp Cells and Tissues

Vital pulp therapy (VPT) is to preserve the nerve and maintain healthy dental pulp tissue. Laser irradiation (LI) is beneficial for VPT. Understanding how LI affects dental pulp cells and tissues is necessary to elucidate the mechanism of reparative dentin and dentin regeneration. Here, we show how...

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Autores principales: Yamakawa, Shunjiro, Niwa, Takahiko, Karakida, Takeo, Kobayashi, Kazuyuki, Yamamoto, Ryuji, Chiba, Risako, Yamakoshi, Yasuo, Hosoya, Noriyasu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6121961/
https://www.ncbi.nlm.nih.gov/pubmed/30126087
http://dx.doi.org/10.3390/ijms19082429
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author Yamakawa, Shunjiro
Niwa, Takahiko
Karakida, Takeo
Kobayashi, Kazuyuki
Yamamoto, Ryuji
Chiba, Risako
Yamakoshi, Yasuo
Hosoya, Noriyasu
author_facet Yamakawa, Shunjiro
Niwa, Takahiko
Karakida, Takeo
Kobayashi, Kazuyuki
Yamamoto, Ryuji
Chiba, Risako
Yamakoshi, Yasuo
Hosoya, Noriyasu
author_sort Yamakawa, Shunjiro
collection PubMed
description Vital pulp therapy (VPT) is to preserve the nerve and maintain healthy dental pulp tissue. Laser irradiation (LI) is beneficial for VPT. Understanding how LI affects dental pulp cells and tissues is necessary to elucidate the mechanism of reparative dentin and dentin regeneration. Here, we show how Er:YAG-LI and diode-LI modulated cell proliferation, apoptosis, gene expression, protease activation, and mineralization induction in dental pulp cells and tissues using cell culture, immunohistochemical, genetic, and protein analysis techniques. Both LIs promoted proliferation in porcine dental pulp-derived cell lines (PPU-7), although the cell growth rate between the LIs was different. In addition to proliferation, both LIs also caused apoptosis; however, the apoptotic index for Er:YAG-LI was higher than that for diode-LI. The mRNA level of odontoblastic gene markers—two dentin sialophosphoprotein splicing variants and matrix metalloprotease (MMP)20 were enhanced by diode-LI, whereas MMP2 was increased by Er:YAG-LI. Both LIs enhanced alkaline phosphatase activity, suggesting that they may help induce PPU-7 differentiation into odontoblast-like cells. In terms of mineralization induction, the LIs were not significantly different, although their cell reactivity was likely different. Both LIs activated four MMPs in porcine dental pulp tissues. We helped elucidate how reparative dentin is formed during laser treatments.
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spelling pubmed-61219612018-09-07 Effects of Er:YAG and Diode Laser Irradiation on Dental Pulp Cells and Tissues Yamakawa, Shunjiro Niwa, Takahiko Karakida, Takeo Kobayashi, Kazuyuki Yamamoto, Ryuji Chiba, Risako Yamakoshi, Yasuo Hosoya, Noriyasu Int J Mol Sci Article Vital pulp therapy (VPT) is to preserve the nerve and maintain healthy dental pulp tissue. Laser irradiation (LI) is beneficial for VPT. Understanding how LI affects dental pulp cells and tissues is necessary to elucidate the mechanism of reparative dentin and dentin regeneration. Here, we show how Er:YAG-LI and diode-LI modulated cell proliferation, apoptosis, gene expression, protease activation, and mineralization induction in dental pulp cells and tissues using cell culture, immunohistochemical, genetic, and protein analysis techniques. Both LIs promoted proliferation in porcine dental pulp-derived cell lines (PPU-7), although the cell growth rate between the LIs was different. In addition to proliferation, both LIs also caused apoptosis; however, the apoptotic index for Er:YAG-LI was higher than that for diode-LI. The mRNA level of odontoblastic gene markers—two dentin sialophosphoprotein splicing variants and matrix metalloprotease (MMP)20 were enhanced by diode-LI, whereas MMP2 was increased by Er:YAG-LI. Both LIs enhanced alkaline phosphatase activity, suggesting that they may help induce PPU-7 differentiation into odontoblast-like cells. In terms of mineralization induction, the LIs were not significantly different, although their cell reactivity was likely different. Both LIs activated four MMPs in porcine dental pulp tissues. We helped elucidate how reparative dentin is formed during laser treatments. MDPI 2018-08-17 /pmc/articles/PMC6121961/ /pubmed/30126087 http://dx.doi.org/10.3390/ijms19082429 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yamakawa, Shunjiro
Niwa, Takahiko
Karakida, Takeo
Kobayashi, Kazuyuki
Yamamoto, Ryuji
Chiba, Risako
Yamakoshi, Yasuo
Hosoya, Noriyasu
Effects of Er:YAG and Diode Laser Irradiation on Dental Pulp Cells and Tissues
title Effects of Er:YAG and Diode Laser Irradiation on Dental Pulp Cells and Tissues
title_full Effects of Er:YAG and Diode Laser Irradiation on Dental Pulp Cells and Tissues
title_fullStr Effects of Er:YAG and Diode Laser Irradiation on Dental Pulp Cells and Tissues
title_full_unstemmed Effects of Er:YAG and Diode Laser Irradiation on Dental Pulp Cells and Tissues
title_short Effects of Er:YAG and Diode Laser Irradiation on Dental Pulp Cells and Tissues
title_sort effects of er:yag and diode laser irradiation on dental pulp cells and tissues
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6121961/
https://www.ncbi.nlm.nih.gov/pubmed/30126087
http://dx.doi.org/10.3390/ijms19082429
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