Dental pulp mesenchymal stem cells-response to fibrin hydrogel reveals ITGA2 and MMPs expression

Regenerative endodontic procedures (REP) aim at reestablishing tooth vitality by replacing the irreversibly damaged dental pulp removed by the dental practitioner with a new functional one. The current treatment of advanced caries relies on the replacement of the inflamed or necrosed dental pulp wit...

Full description

Bibliographic Details
Published in:Heliyon
Main Authors: David Tong, Stéphanie Gobert, Alicia Reuzeau, Jean-Christophe Farges, Marianne Leveque, Marie Bolon, Arthur Costantini, Marielle Pasdeloup, Jérôme Lafont, Maxime Ducret, Mourad Bekhouche
Format: Article
Language:English
Published: Elsevier 2024-07-01
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2405844024089229
_version_ 1850100660224131072
author David Tong
Stéphanie Gobert
Alicia Reuzeau
Jean-Christophe Farges
Marianne Leveque
Marie Bolon
Arthur Costantini
Marielle Pasdeloup
Jérôme Lafont
Maxime Ducret
Mourad Bekhouche
author_facet David Tong
Stéphanie Gobert
Alicia Reuzeau
Jean-Christophe Farges
Marianne Leveque
Marie Bolon
Arthur Costantini
Marielle Pasdeloup
Jérôme Lafont
Maxime Ducret
Mourad Bekhouche
author_sort David Tong
collection DOAJ
container_title Heliyon
description Regenerative endodontic procedures (REP) aim at reestablishing tooth vitality by replacing the irreversibly damaged dental pulp removed by the dental practitioner with a new functional one. The current treatment of advanced caries relies on the replacement of the inflamed or necrosed dental pulp with an inert filling material. This leads to a functional but non-vital tooth, which lacks the ability to sense dental tissue damage, and to protect from further bacterial attack. Therapeutic strategies inspired by tissue engineering called REP propose to regenerate a fully functional dental pulp directly in the canal space. Promising results were obtained using dental pulp mesenchymal stem cells (DP-MSCs) in combination with bio-inspired artificial and temporary 3D hydrogels made of extracellular matrix molecules such as collagen and fibrin biomacromolecules. However, the uncontrolled mechanisms of DP regeneration from DP-MSCs in 3D biomacromolecules fail to regenerate a fully functional DP and can induce fibrotic scarring or mineralized tissue formation to a non-negligible extent. The lack of knowledge regarding the early molecular mechanisms initiated by DP-MSCs seeded in ECM-made hydrogels is a scientific lock for REP. In this study, we investigated the early DP-MSC–response in a 3D fibrin hydrogel. DP-MSCs isolated from human third molars were cultured for 24 h in the fibrin hydrogel. The differential transcript levels of extracellular and cell surface genes were screened with 84-gene PCR array. Out of the 84 genes screened, 9 were found to be overexpressed, including those coding for the integrin alpha 2 subunit, the collagenase MMP1 and stromelysins MMP3, MMP10 and MMP12. Over-expression of ITGA2 was confirmed by RT-qPCR. The expression of alpha 2 integrin subunit protein was assessed over time by immunoblot and immunofluorescence staining. The increase in the transcript level of MMP1, MMP3, MM10 and MMP12 was confirmed by RT-qPCR. The overexpression of MMP1 and 3 at the protein level was assessed by immunoblot. MMP3 expression by DP-MSCs was observed by immunofluorescence staining. This work demonstrates overexpression of ITGA2 and of MMP1, 3, 10 and 12 by DP-MSCs cultured in a fibrin hydrogel. The main preliminary extracellular and cell surface response of the DP-MSCs to fibrin hydrogel seems to rely on a ITGA2/MMP3 axis. Further investigations are needed to precisely decipher the role of this axis in dental pulp tissue building. Nevertheless, this work identifies extracellular and cell surface molecules that could be potential checkpoints to be targeted to guide proper dental pulp tissue regeneration.
format Article
id doaj-art-e83fab6aedeb41d8b783f765d39f4635
institution Directory of Open Access Journals
issn 2405-8440
language English
publishDate 2024-07-01
publisher Elsevier
record_format Article
spelling doaj-art-e83fab6aedeb41d8b783f765d39f46352025-08-20T00:04:53ZengElsevierHeliyon2405-84402024-07-011013e3289110.1016/j.heliyon.2024.e32891Dental pulp mesenchymal stem cells-response to fibrin hydrogel reveals ITGA2 and MMPs expressionDavid Tong0Stéphanie Gobert1Alicia Reuzeau2Jean-Christophe Farges3Marianne Leveque4Marie Bolon5Arthur Costantini6Marielle Pasdeloup7Jérôme Lafont8Maxime Ducret9Mourad Bekhouche10LBTI - Tissue Biology and Therapeutic Engineering Laboratory, UMR5305, CNRS/Université, Claude Bernard Lyon 1, FranceLBTI - Tissue Biology and Therapeutic Engineering Laboratory, UMR5305, CNRS/Université, Claude Bernard Lyon 1, FranceLBTI - Tissue Biology and Therapeutic Engineering Laboratory, UMR5305, CNRS/Université, Claude Bernard Lyon 1, FranceLBTI - Tissue Biology and Therapeutic Engineering Laboratory, UMR5305, CNRS/Université, Claude Bernard Lyon 1, France; Odontology Faculty of Lyon, University Lyon 1, France; Hospices Civils de Lyon, FranceLBTI - Tissue Biology and Therapeutic Engineering Laboratory, UMR5305, CNRS/Université, Claude Bernard Lyon 1, FranceLBTI - Tissue Biology and Therapeutic Engineering Laboratory, UMR5305, CNRS/Université, Claude Bernard Lyon 1, FranceLBTI - Tissue Biology and Therapeutic Engineering Laboratory, UMR5305, CNRS/Université, Claude Bernard Lyon 1, France; Hospices Civils de Lyon, FranceLBTI - Tissue Biology and Therapeutic Engineering Laboratory, UMR5305, CNRS/Université, Claude Bernard Lyon 1, FranceLBTI - Tissue Biology and Therapeutic Engineering Laboratory, UMR5305, CNRS/Université, Claude Bernard Lyon 1, FranceLBTI - Tissue Biology and Therapeutic Engineering Laboratory, UMR5305, CNRS/Université, Claude Bernard Lyon 1, France; Odontology Faculty of Lyon, University Lyon 1, FranceLBTI - Tissue Biology and Therapeutic Engineering Laboratory, UMR5305, CNRS/Université, Claude Bernard Lyon 1, France; Corresponding author.Regenerative endodontic procedures (REP) aim at reestablishing tooth vitality by replacing the irreversibly damaged dental pulp removed by the dental practitioner with a new functional one. The current treatment of advanced caries relies on the replacement of the inflamed or necrosed dental pulp with an inert filling material. This leads to a functional but non-vital tooth, which lacks the ability to sense dental tissue damage, and to protect from further bacterial attack. Therapeutic strategies inspired by tissue engineering called REP propose to regenerate a fully functional dental pulp directly in the canal space. Promising results were obtained using dental pulp mesenchymal stem cells (DP-MSCs) in combination with bio-inspired artificial and temporary 3D hydrogels made of extracellular matrix molecules such as collagen and fibrin biomacromolecules. However, the uncontrolled mechanisms of DP regeneration from DP-MSCs in 3D biomacromolecules fail to regenerate a fully functional DP and can induce fibrotic scarring or mineralized tissue formation to a non-negligible extent. The lack of knowledge regarding the early molecular mechanisms initiated by DP-MSCs seeded in ECM-made hydrogels is a scientific lock for REP. In this study, we investigated the early DP-MSC–response in a 3D fibrin hydrogel. DP-MSCs isolated from human third molars were cultured for 24 h in the fibrin hydrogel. The differential transcript levels of extracellular and cell surface genes were screened with 84-gene PCR array. Out of the 84 genes screened, 9 were found to be overexpressed, including those coding for the integrin alpha 2 subunit, the collagenase MMP1 and stromelysins MMP3, MMP10 and MMP12. Over-expression of ITGA2 was confirmed by RT-qPCR. The expression of alpha 2 integrin subunit protein was assessed over time by immunoblot and immunofluorescence staining. The increase in the transcript level of MMP1, MMP3, MM10 and MMP12 was confirmed by RT-qPCR. The overexpression of MMP1 and 3 at the protein level was assessed by immunoblot. MMP3 expression by DP-MSCs was observed by immunofluorescence staining. This work demonstrates overexpression of ITGA2 and of MMP1, 3, 10 and 12 by DP-MSCs cultured in a fibrin hydrogel. The main preliminary extracellular and cell surface response of the DP-MSCs to fibrin hydrogel seems to rely on a ITGA2/MMP3 axis. Further investigations are needed to precisely decipher the role of this axis in dental pulp tissue building. Nevertheless, this work identifies extracellular and cell surface molecules that could be potential checkpoints to be targeted to guide proper dental pulp tissue regeneration.http://www.sciencedirect.com/science/article/pii/S2405844024089229Regenerative endodontic proceduresFibrinDental pulpMetalloproteasesIntegrins
spellingShingle David Tong
Stéphanie Gobert
Alicia Reuzeau
Jean-Christophe Farges
Marianne Leveque
Marie Bolon
Arthur Costantini
Marielle Pasdeloup
Jérôme Lafont
Maxime Ducret
Mourad Bekhouche
Dental pulp mesenchymal stem cells-response to fibrin hydrogel reveals ITGA2 and MMPs expression
Regenerative endodontic procedures
Fibrin
Dental pulp
Metalloproteases
Integrins
title Dental pulp mesenchymal stem cells-response to fibrin hydrogel reveals ITGA2 and MMPs expression
title_full Dental pulp mesenchymal stem cells-response to fibrin hydrogel reveals ITGA2 and MMPs expression
title_fullStr Dental pulp mesenchymal stem cells-response to fibrin hydrogel reveals ITGA2 and MMPs expression
title_full_unstemmed Dental pulp mesenchymal stem cells-response to fibrin hydrogel reveals ITGA2 and MMPs expression
title_short Dental pulp mesenchymal stem cells-response to fibrin hydrogel reveals ITGA2 and MMPs expression
title_sort dental pulp mesenchymal stem cells response to fibrin hydrogel reveals itga2 and mmps expression
topic Regenerative endodontic procedures
Fibrin
Dental pulp
Metalloproteases
Integrins
url http://www.sciencedirect.com/science/article/pii/S2405844024089229
work_keys_str_mv AT davidtong dentalpulpmesenchymalstemcellsresponsetofibrinhydrogelrevealsitga2andmmpsexpression
AT stephaniegobert dentalpulpmesenchymalstemcellsresponsetofibrinhydrogelrevealsitga2andmmpsexpression
AT aliciareuzeau dentalpulpmesenchymalstemcellsresponsetofibrinhydrogelrevealsitga2andmmpsexpression
AT jeanchristophefarges dentalpulpmesenchymalstemcellsresponsetofibrinhydrogelrevealsitga2andmmpsexpression
AT marianneleveque dentalpulpmesenchymalstemcellsresponsetofibrinhydrogelrevealsitga2andmmpsexpression
AT mariebolon dentalpulpmesenchymalstemcellsresponsetofibrinhydrogelrevealsitga2andmmpsexpression
AT arthurcostantini dentalpulpmesenchymalstemcellsresponsetofibrinhydrogelrevealsitga2andmmpsexpression
AT mariellepasdeloup dentalpulpmesenchymalstemcellsresponsetofibrinhydrogelrevealsitga2andmmpsexpression
AT jeromelafont dentalpulpmesenchymalstemcellsresponsetofibrinhydrogelrevealsitga2andmmpsexpression
AT maximeducret dentalpulpmesenchymalstemcellsresponsetofibrinhydrogelrevealsitga2andmmpsexpression
AT mouradbekhouche dentalpulpmesenchymalstemcellsresponsetofibrinhydrogelrevealsitga2andmmpsexpression