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Orthodontic force regulates metalloproteinase-3 promoter in osteoblasts and transgenic mouse models

BACKGROUND/PURPOSE: Previously we demonstrated up-regulation of matrix metalloproteinase-3 (MMP-3) in human osteoblasts under compression and in bony specimens of experimental orthodontic tooth movement (OTM). Here, we studied the temporal characteristics of compression stimulation in human and mous...

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Autores principales: Hsu, Li-Fang, Chang, Bei-En, Tseng, Kuo-Jung, Liao, Chih-Ching, Tsai, Shu-Chun, Hsiao, Hsuan-Yi, Lin, Sheng-Chin, Liao, Pei-Wen, Chen, Yi-Jane, Jane Yao, Chung-Chen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Association for Dental Sciences of the Republic of China 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8740386/
https://www.ncbi.nlm.nih.gov/pubmed/35028055
http://dx.doi.org/10.1016/j.jds.2021.11.015
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author Hsu, Li-Fang
Chang, Bei-En
Tseng, Kuo-Jung
Liao, Chih-Ching
Tsai, Shu-Chun
Hsiao, Hsuan-Yi
Lin, Sheng-Chin
Liao, Pei-Wen
Chen, Yi-Jane
Jane Yao, Chung-Chen
author_facet Hsu, Li-Fang
Chang, Bei-En
Tseng, Kuo-Jung
Liao, Chih-Ching
Tsai, Shu-Chun
Hsiao, Hsuan-Yi
Lin, Sheng-Chin
Liao, Pei-Wen
Chen, Yi-Jane
Jane Yao, Chung-Chen
author_sort Hsu, Li-Fang
collection PubMed
description BACKGROUND/PURPOSE: Previously we demonstrated up-regulation of matrix metalloproteinase-3 (MMP-3) in human osteoblasts under compression and in bony specimens of experimental orthodontic tooth movement (OTM). Here, we studied the temporal characteristics of compression stimulation in human and mouse osteoblast cell lines, and generated a transgenic mouse model for assessing the MMP-3 expression during OTM. MATERIALS AND METHODS: We investigated MMP-3 expressions in human and murine osteoblasts through RT-PCR and luciferase assay, after compressive force loading. Inhibitors were added to identify the possible mechanisms for signal transduction. A human MMP-3 promoter was isolated, cloned and transfected to generate a transgenic mouse with a green fluorescent protein reporter. OTM was then initiated to observe the location and time course of transcriptional regulation of MMP-3 signals. RESULTS: We found changes in the transcription of MMP-3 in response to mechanical force applied to both human and mouse osteoblast cell lines, suggesting that the response is positive across species. Cloned human MMP-3 promoter may cause the response of luciferase to 1% compression. Moreover, p38 inhibitor exerted a down-regulatory effect on MMP-3 promoter expression, although the inhibitory effect didn't reach a significant level. In the transgenic mouse OTM model, we again found increased expression of MMP-3 in response to mechanical force loading around the periodontal ligament. CONCLUSION: Mechanical force can stimulate MMP-3 expression, possibly through the p38 MAPK pathway, with its strongest signal occurring at 24 h. The mechanical responsiveness in MMP-3 promoter regions can be observed in both humans and rodents in vitro and in vivo.
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spelling pubmed-87403862022-01-12 Orthodontic force regulates metalloproteinase-3 promoter in osteoblasts and transgenic mouse models Hsu, Li-Fang Chang, Bei-En Tseng, Kuo-Jung Liao, Chih-Ching Tsai, Shu-Chun Hsiao, Hsuan-Yi Lin, Sheng-Chin Liao, Pei-Wen Chen, Yi-Jane Jane Yao, Chung-Chen J Dent Sci Original Article BACKGROUND/PURPOSE: Previously we demonstrated up-regulation of matrix metalloproteinase-3 (MMP-3) in human osteoblasts under compression and in bony specimens of experimental orthodontic tooth movement (OTM). Here, we studied the temporal characteristics of compression stimulation in human and mouse osteoblast cell lines, and generated a transgenic mouse model for assessing the MMP-3 expression during OTM. MATERIALS AND METHODS: We investigated MMP-3 expressions in human and murine osteoblasts through RT-PCR and luciferase assay, after compressive force loading. Inhibitors were added to identify the possible mechanisms for signal transduction. A human MMP-3 promoter was isolated, cloned and transfected to generate a transgenic mouse with a green fluorescent protein reporter. OTM was then initiated to observe the location and time course of transcriptional regulation of MMP-3 signals. RESULTS: We found changes in the transcription of MMP-3 in response to mechanical force applied to both human and mouse osteoblast cell lines, suggesting that the response is positive across species. Cloned human MMP-3 promoter may cause the response of luciferase to 1% compression. Moreover, p38 inhibitor exerted a down-regulatory effect on MMP-3 promoter expression, although the inhibitory effect didn't reach a significant level. In the transgenic mouse OTM model, we again found increased expression of MMP-3 in response to mechanical force loading around the periodontal ligament. CONCLUSION: Mechanical force can stimulate MMP-3 expression, possibly through the p38 MAPK pathway, with its strongest signal occurring at 24 h. The mechanical responsiveness in MMP-3 promoter regions can be observed in both humans and rodents in vitro and in vivo. Association for Dental Sciences of the Republic of China 2022-01 2021-12-04 /pmc/articles/PMC8740386/ /pubmed/35028055 http://dx.doi.org/10.1016/j.jds.2021.11.015 Text en © 2021 Association for Dental Sciences of the Republic of China. Publishing services by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Hsu, Li-Fang
Chang, Bei-En
Tseng, Kuo-Jung
Liao, Chih-Ching
Tsai, Shu-Chun
Hsiao, Hsuan-Yi
Lin, Sheng-Chin
Liao, Pei-Wen
Chen, Yi-Jane
Jane Yao, Chung-Chen
Orthodontic force regulates metalloproteinase-3 promoter in osteoblasts and transgenic mouse models
title Orthodontic force regulates metalloproteinase-3 promoter in osteoblasts and transgenic mouse models
title_full Orthodontic force regulates metalloproteinase-3 promoter in osteoblasts and transgenic mouse models
title_fullStr Orthodontic force regulates metalloproteinase-3 promoter in osteoblasts and transgenic mouse models
title_full_unstemmed Orthodontic force regulates metalloproteinase-3 promoter in osteoblasts and transgenic mouse models
title_short Orthodontic force regulates metalloproteinase-3 promoter in osteoblasts and transgenic mouse models
title_sort orthodontic force regulates metalloproteinase-3 promoter in osteoblasts and transgenic mouse models
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8740386/
https://www.ncbi.nlm.nih.gov/pubmed/35028055
http://dx.doi.org/10.1016/j.jds.2021.11.015
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