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Mesenchymal stromal cell exosomes enhance dental pulp cell functions and promote pulp-dentin regeneration

Mesenchymal stromal/stem cell (MSC) therapies are currently being explored for dental pulp regeneration. As the therapeutic effects of MSCs in tissue repair are mediated mainly through the release of extracellular vesicles (EVs) including exosomes, we investigated here the cellular processes and mol...

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Autores principales: Shi, Jiajun, Teo, Kristeen Ye Wen, Zhang, Shipin, Lai, Ruenn Chai, Rosa, Vinicius, Tong, Huei Jinn, Duggal, Mandeep S., Lim, Sai Kiang, Toh, Wei Seong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10239699/
https://www.ncbi.nlm.nih.gov/pubmed/37283805
http://dx.doi.org/10.1016/j.bbiosy.2023.100078
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author Shi, Jiajun
Teo, Kristeen Ye Wen
Zhang, Shipin
Lai, Ruenn Chai
Rosa, Vinicius
Tong, Huei Jinn
Duggal, Mandeep S.
Lim, Sai Kiang
Toh, Wei Seong
author_facet Shi, Jiajun
Teo, Kristeen Ye Wen
Zhang, Shipin
Lai, Ruenn Chai
Rosa, Vinicius
Tong, Huei Jinn
Duggal, Mandeep S.
Lim, Sai Kiang
Toh, Wei Seong
author_sort Shi, Jiajun
collection PubMed
description Mesenchymal stromal/stem cell (MSC) therapies are currently being explored for dental pulp regeneration. As the therapeutic effects of MSCs in tissue repair are mediated mainly through the release of extracellular vesicles (EVs) including exosomes, we investigated here the cellular processes and molecular mechanisms modulated by MSC exosomes in dental pulp regeneration. Using dental pulp cell (DPC) cultures, we demonstrated that MSC exosomes could increase DPC migration, proliferation, and odontogenic differentiation. The enhancement of these cellular processes was mediated through exosomal CD73-mediated adenosine receptor activation of AKT and ERK signaling. Consistent with these observations, MSC exosomes increased the expression of dentin matrix proteins and promoted the formation of dentin-like tissue and bridge-like structures in a rat pulp defect model. These effects were comparable to that of mineral trioxide aggregate (MTA) treatment. MSC exosomes also yielded recellularized pulp-dentin tissues in the root canal of endodontically-treated human premolars, following subcutaneous implantation in the mouse dorsum. Together, our findings suggest that MSC exosomes could exert a multi-faceted effect on DPC functions including migration, proliferation and odontogenic differentiation to promote dental pulp regeneration. This study provides the basis for development of MSC exosomes as a cell-free MSC therapeutic alternative for pulp-dentin regeneration.
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spelling pubmed-102396992023-06-06 Mesenchymal stromal cell exosomes enhance dental pulp cell functions and promote pulp-dentin regeneration Shi, Jiajun Teo, Kristeen Ye Wen Zhang, Shipin Lai, Ruenn Chai Rosa, Vinicius Tong, Huei Jinn Duggal, Mandeep S. Lim, Sai Kiang Toh, Wei Seong Biomater Biosyst Research Article Mesenchymal stromal/stem cell (MSC) therapies are currently being explored for dental pulp regeneration. As the therapeutic effects of MSCs in tissue repair are mediated mainly through the release of extracellular vesicles (EVs) including exosomes, we investigated here the cellular processes and molecular mechanisms modulated by MSC exosomes in dental pulp regeneration. Using dental pulp cell (DPC) cultures, we demonstrated that MSC exosomes could increase DPC migration, proliferation, and odontogenic differentiation. The enhancement of these cellular processes was mediated through exosomal CD73-mediated adenosine receptor activation of AKT and ERK signaling. Consistent with these observations, MSC exosomes increased the expression of dentin matrix proteins and promoted the formation of dentin-like tissue and bridge-like structures in a rat pulp defect model. These effects were comparable to that of mineral trioxide aggregate (MTA) treatment. MSC exosomes also yielded recellularized pulp-dentin tissues in the root canal of endodontically-treated human premolars, following subcutaneous implantation in the mouse dorsum. Together, our findings suggest that MSC exosomes could exert a multi-faceted effect on DPC functions including migration, proliferation and odontogenic differentiation to promote dental pulp regeneration. This study provides the basis for development of MSC exosomes as a cell-free MSC therapeutic alternative for pulp-dentin regeneration. Elsevier 2023-05-26 /pmc/articles/PMC10239699/ /pubmed/37283805 http://dx.doi.org/10.1016/j.bbiosy.2023.100078 Text en © 2023 The Authors. Published by Elsevier Ltd. 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 Research Article
Shi, Jiajun
Teo, Kristeen Ye Wen
Zhang, Shipin
Lai, Ruenn Chai
Rosa, Vinicius
Tong, Huei Jinn
Duggal, Mandeep S.
Lim, Sai Kiang
Toh, Wei Seong
Mesenchymal stromal cell exosomes enhance dental pulp cell functions and promote pulp-dentin regeneration
title Mesenchymal stromal cell exosomes enhance dental pulp cell functions and promote pulp-dentin regeneration
title_full Mesenchymal stromal cell exosomes enhance dental pulp cell functions and promote pulp-dentin regeneration
title_fullStr Mesenchymal stromal cell exosomes enhance dental pulp cell functions and promote pulp-dentin regeneration
title_full_unstemmed Mesenchymal stromal cell exosomes enhance dental pulp cell functions and promote pulp-dentin regeneration
title_short Mesenchymal stromal cell exosomes enhance dental pulp cell functions and promote pulp-dentin regeneration
title_sort mesenchymal stromal cell exosomes enhance dental pulp cell functions and promote pulp-dentin regeneration
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10239699/
https://www.ncbi.nlm.nih.gov/pubmed/37283805
http://dx.doi.org/10.1016/j.bbiosy.2023.100078
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