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Tgfbr2 in Dental Pulp Cells Guides Neurite Outgrowth in Developing Teeth

Transforming growth factor β (TGFβ) plays an important role in tooth morphogenesis and mineralization. During postnatal development, the dental pulp (DP) mesenchyme secretes neurotrophic factors that guide trigeminal nerve fibers into and throughout the DP. This process is tightly linked with dentin...

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Autores principales: Stanwick, Monica, Barkley, Courtney, Serra, Rosa, Kruggel, Andrew, Webb, Amy, Zhao, Yue, Pietrzak, Maciej, Ashman, Chandler, Staats, Allie, Shahid, Shifa, Peters, Sarah B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8901236/
https://www.ncbi.nlm.nih.gov/pubmed/35265620
http://dx.doi.org/10.3389/fcell.2022.834815
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author Stanwick, Monica
Barkley, Courtney
Serra, Rosa
Kruggel, Andrew
Webb, Amy
Zhao, Yue
Pietrzak, Maciej
Ashman, Chandler
Staats, Allie
Shahid, Shifa
Peters, Sarah B.
author_facet Stanwick, Monica
Barkley, Courtney
Serra, Rosa
Kruggel, Andrew
Webb, Amy
Zhao, Yue
Pietrzak, Maciej
Ashman, Chandler
Staats, Allie
Shahid, Shifa
Peters, Sarah B.
author_sort Stanwick, Monica
collection PubMed
description Transforming growth factor β (TGFβ) plays an important role in tooth morphogenesis and mineralization. During postnatal development, the dental pulp (DP) mesenchyme secretes neurotrophic factors that guide trigeminal nerve fibers into and throughout the DP. This process is tightly linked with dentin formation and mineralization. Our laboratory established a mouse model in which Tgfbr2 was conditionally deleted in DP mesenchyme using an Osterix promoter-driven Cre recombinase (Tgfbr2 ( cko )). These mice survived postnatally with significant defects in bones and teeth, including reduced mineralization and short roots. Hematoxylin and eosin staining revealed reduced axon-like structures in the mutant mice. Reporter imaging demonstrated that Osterix-Cre activity within the tooth was active in the DP and derivatives, but not in neuronal afferents. Immunofluorescence staining for β3 tubulin (neuronal marker) was performed on serial cryosections from control and mutant molars on postnatal days 7 and 24 (P7, P24). Confocal imaging and pixel quantification demonstrated reduced innervation in Tgfbr2 ( cko ) first molars at both stages compared to controls, indicating that signals necessary to promote neurite outgrowth were disrupted by Tgfbr2 deletion. We performed mRNA-Sequence (RNA-Seq) and gene onotology analyses using RNA from the DP of P7 control and mutant mice to investigate the pathways involved in Tgfbr2-mediated tooth development. These analyses identified downregulation of several mineralization-related and neuronal genes in the Tgfbr2 ( cko ) DP compared to controls. Select gene expression patterns were confirmed by quantitative real-time PCR and immunofluorescence imaging. Lastly, trigeminal neurons were co-cultured atop Transwell filters overlying primary Tgfbr2 ( f/f ) DP cells. Tgfbr2 in the DP was deleted via Adenovirus-expressed Cre recombinase. Confocal imaging of axons through the filter pores showed increased axonal sprouting from neurons cultured with Tgfbr2-positive DP cells compared to neurons cultured alone. Axon sprouting was reduced when Tgfbr2 was knocked down in the DP cells. Immunofluorescence of dentin sialophosphoprotein in co-cultured DP cells confirmed reduced mineralization potential in cells with Tgfbr2 deletion. Both our proteomics and RNA-Seq analyses indicate that axonal guidance cues, particularly semaphorin signaling, were disrupted by Tgfbr2 deletion. Thus, Tgfbr2 in the DP mesenchyme appears to regulate differentiation and the cells’ ability to guide neurite outgrowth during tooth mineralization and innervation.
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spelling pubmed-89012362022-03-08 Tgfbr2 in Dental Pulp Cells Guides Neurite Outgrowth in Developing Teeth Stanwick, Monica Barkley, Courtney Serra, Rosa Kruggel, Andrew Webb, Amy Zhao, Yue Pietrzak, Maciej Ashman, Chandler Staats, Allie Shahid, Shifa Peters, Sarah B. Front Cell Dev Biol Cell and Developmental Biology Transforming growth factor β (TGFβ) plays an important role in tooth morphogenesis and mineralization. During postnatal development, the dental pulp (DP) mesenchyme secretes neurotrophic factors that guide trigeminal nerve fibers into and throughout the DP. This process is tightly linked with dentin formation and mineralization. Our laboratory established a mouse model in which Tgfbr2 was conditionally deleted in DP mesenchyme using an Osterix promoter-driven Cre recombinase (Tgfbr2 ( cko )). These mice survived postnatally with significant defects in bones and teeth, including reduced mineralization and short roots. Hematoxylin and eosin staining revealed reduced axon-like structures in the mutant mice. Reporter imaging demonstrated that Osterix-Cre activity within the tooth was active in the DP and derivatives, but not in neuronal afferents. Immunofluorescence staining for β3 tubulin (neuronal marker) was performed on serial cryosections from control and mutant molars on postnatal days 7 and 24 (P7, P24). Confocal imaging and pixel quantification demonstrated reduced innervation in Tgfbr2 ( cko ) first molars at both stages compared to controls, indicating that signals necessary to promote neurite outgrowth were disrupted by Tgfbr2 deletion. We performed mRNA-Sequence (RNA-Seq) and gene onotology analyses using RNA from the DP of P7 control and mutant mice to investigate the pathways involved in Tgfbr2-mediated tooth development. These analyses identified downregulation of several mineralization-related and neuronal genes in the Tgfbr2 ( cko ) DP compared to controls. Select gene expression patterns were confirmed by quantitative real-time PCR and immunofluorescence imaging. Lastly, trigeminal neurons were co-cultured atop Transwell filters overlying primary Tgfbr2 ( f/f ) DP cells. Tgfbr2 in the DP was deleted via Adenovirus-expressed Cre recombinase. Confocal imaging of axons through the filter pores showed increased axonal sprouting from neurons cultured with Tgfbr2-positive DP cells compared to neurons cultured alone. Axon sprouting was reduced when Tgfbr2 was knocked down in the DP cells. Immunofluorescence of dentin sialophosphoprotein in co-cultured DP cells confirmed reduced mineralization potential in cells with Tgfbr2 deletion. Both our proteomics and RNA-Seq analyses indicate that axonal guidance cues, particularly semaphorin signaling, were disrupted by Tgfbr2 deletion. Thus, Tgfbr2 in the DP mesenchyme appears to regulate differentiation and the cells’ ability to guide neurite outgrowth during tooth mineralization and innervation. Frontiers Media S.A. 2022-02-21 /pmc/articles/PMC8901236/ /pubmed/35265620 http://dx.doi.org/10.3389/fcell.2022.834815 Text en Copyright © 2022 Stanwick, Barkley, Serra, Kruggel, Webb, Zhao, Pietrzak, Ashman, Staats, Shahid and Peters. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Stanwick, Monica
Barkley, Courtney
Serra, Rosa
Kruggel, Andrew
Webb, Amy
Zhao, Yue
Pietrzak, Maciej
Ashman, Chandler
Staats, Allie
Shahid, Shifa
Peters, Sarah B.
Tgfbr2 in Dental Pulp Cells Guides Neurite Outgrowth in Developing Teeth
title Tgfbr2 in Dental Pulp Cells Guides Neurite Outgrowth in Developing Teeth
title_full Tgfbr2 in Dental Pulp Cells Guides Neurite Outgrowth in Developing Teeth
title_fullStr Tgfbr2 in Dental Pulp Cells Guides Neurite Outgrowth in Developing Teeth
title_full_unstemmed Tgfbr2 in Dental Pulp Cells Guides Neurite Outgrowth in Developing Teeth
title_short Tgfbr2 in Dental Pulp Cells Guides Neurite Outgrowth in Developing Teeth
title_sort tgfbr2 in dental pulp cells guides neurite outgrowth in developing teeth
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8901236/
https://www.ncbi.nlm.nih.gov/pubmed/35265620
http://dx.doi.org/10.3389/fcell.2022.834815
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