Dentine matrix metalloproteinases as potential mediators of dentine regeneration
Matrix metalloproteinases (MMPs) have been implicated not only in the regulation of developmental processes but also in the release of biologically active molecules and in the modulation of repair during tertiary dentine formation. Although efforts to preserve dentine have focused on inhibiting the...
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AO Research Institute Davos
2021
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oai:doaj.org-article:1149fc7d1deb4b68bb4500c3df1cf2082021-11-24T17:22:15ZDentine matrix metalloproteinases as potential mediators of dentine regeneration10.22203/eCM.v042a241473-2262https://doaj.org/article/1149fc7d1deb4b68bb4500c3df1cf2082021-11-01T00:00:00Zhttps://www.ecmjournal.org/papers/vol042/pdf/v042a24.pdfhttps://doaj.org/toc/1473-2262Matrix metalloproteinases (MMPs) have been implicated not only in the regulation of developmental processes but also in the release of biologically active molecules and in the modulation of repair during tertiary dentine formation. Although efforts to preserve dentine have focused on inhibiting the activity of these proteases, their function is much more complex and necessary for dentine repair than expected. The present review explores the role of MMPs as bioactive components of the dentine matrix involved in dentine formation, repair and regeneration. Special consideration is given to the mechanical properties of dentine, including those of reactionary and reparative dentine, and the known roles of MMPs in their formation. MMPs are critical components of the dentine matrix and should be considered as important candidates in dentine regeneration.E GuiradoA George AO Research Institute Davosarticledentineenamelperiodontal ligamenttoothdental regenerative repairmatrix metalloproteinasesdental physiologysignalling molecules/growth factorsSurgeryRD1-811Diseases of the musculoskeletal systemRC925-935ENEuropean Cells & Materials, Vol 42, Pp 392-400 (2021) |
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topic |
dentine enamel periodontal ligament tooth dental regenerative repair matrix metalloproteinases dental physiology signalling molecules/growth factors Surgery RD1-811 Diseases of the musculoskeletal system RC925-935 |
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dentine enamel periodontal ligament tooth dental regenerative repair matrix metalloproteinases dental physiology signalling molecules/growth factors Surgery RD1-811 Diseases of the musculoskeletal system RC925-935 E Guirado A George Dentine matrix metalloproteinases as potential mediators of dentine regeneration |
description |
Matrix metalloproteinases (MMPs) have been implicated not only in the regulation of developmental processes but also in the release of biologically active molecules and in the modulation of repair during tertiary dentine formation. Although efforts to preserve dentine have focused on inhibiting the activity of these proteases, their function is much more complex and necessary for dentine repair than expected. The present review explores the role of MMPs as bioactive components of the dentine matrix involved in dentine formation, repair and regeneration. Special consideration is given to the mechanical properties of dentine, including those of reactionary and reparative dentine, and the known roles of MMPs in their formation. MMPs are critical components of the dentine matrix and should be considered as important candidates in dentine regeneration. |
format |
article |
author |
E Guirado A George |
author_facet |
E Guirado A George |
author_sort |
E Guirado |
title |
Dentine matrix metalloproteinases as potential mediators of dentine regeneration |
title_short |
Dentine matrix metalloproteinases as potential mediators of dentine regeneration |
title_full |
Dentine matrix metalloproteinases as potential mediators of dentine regeneration |
title_fullStr |
Dentine matrix metalloproteinases as potential mediators of dentine regeneration |
title_full_unstemmed |
Dentine matrix metalloproteinases as potential mediators of dentine regeneration |
title_sort |
dentine matrix metalloproteinases as potential mediators of dentine regeneration |
publisher |
AO Research Institute Davos |
publishDate |
2021 |
url |
https://doaj.org/article/1149fc7d1deb4b68bb4500c3df1cf208 |
work_keys_str_mv |
AT eguirado dentinematrixmetalloproteinasesaspotentialmediatorsofdentineregeneration AT ageorge dentinematrixmetalloproteinasesaspotentialmediatorsofdentineregeneration |
_version_ |
1718414736321675264 |