Cargando…

Chronic Inflammation and Angiogenic Signaling Axis Impairs Differentiation of Dental-Pulp Stem Cells

Dental-pulp tissue is often exposed to inflammatory injury. Sequested growth factors or angiogenic signaling proteins that are released following inflammatory injury play a pivotal role in the formation of reparative dentin. While limited or moderate angiogenesis may be helpful for dental pulp maint...

Descripción completa

Detalles Bibliográficos
Autores principales: Boyle, Michael, Chun, Crystal, Strojny, Chelsee, Narayanan, Raghuvaran, Bartholomew, Amelia, Sundivakkam, Premanand, Alapati, Satish
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4245135/
https://www.ncbi.nlm.nih.gov/pubmed/25427002
http://dx.doi.org/10.1371/journal.pone.0113419
_version_ 1782346318412251136
author Boyle, Michael
Chun, Crystal
Strojny, Chelsee
Narayanan, Raghuvaran
Bartholomew, Amelia
Sundivakkam, Premanand
Alapati, Satish
author_facet Boyle, Michael
Chun, Crystal
Strojny, Chelsee
Narayanan, Raghuvaran
Bartholomew, Amelia
Sundivakkam, Premanand
Alapati, Satish
author_sort Boyle, Michael
collection PubMed
description Dental-pulp tissue is often exposed to inflammatory injury. Sequested growth factors or angiogenic signaling proteins that are released following inflammatory injury play a pivotal role in the formation of reparative dentin. While limited or moderate angiogenesis may be helpful for dental pulp maintenance, the induction of significant level of angiogenesis is probably highly detrimental. Hitherto, several studies have addressed the effects of proinflammatory stimuli on the survival and differentiation of dental-pulp stem cells (DPSC), in vitro. However, the mechanisms communal to the inflammatory and angiogenic signaling involved in DPSC survival and differentiation remain unknown. Our studies observed that short-term exposure to TNF-α (6 and 12 hours [hrs]) induced apoptosis with an upregulation of VEGF expression and NF-κB signaling. However, long-term (chronic) exposure (14 days) to TNF-α resulted in an increased proliferation with a concomitant shortening of the telomere length. Interestingly, DPSC pretreated with Nemo binding domain (NBD) peptide (a cell permeable NF-κB inhibitor) significantly ameliorated TNF-α- and/or VEGF-induced proliferation and the shortening of telomere length. NBD peptide pretreatment significantly improved TNF-α-induced downregulation of proteins essential for differentiation, such as bone morphogenic proteins (BMP)-1 & 2, BMP receptor isoforms-1&2, trasnforming growth factor (TGF), osteoactivin and osteocalcin. Additionally, inhibition of NF-κB signaling markedly increased the mineralization potential, a process abrogated by chronic exposure to TNF-α. Thus, our studies demonstrated that chronic inflammation mediates telomere shortening via NF-κB signaling in human DPSC. Resultant chromosomal instability leads to an emergence of increased proliferation of DPSC, while negatively regulating the differentiation of DPSC, in vitro.
format Online
Article
Text
id pubmed-4245135
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-42451352014-12-05 Chronic Inflammation and Angiogenic Signaling Axis Impairs Differentiation of Dental-Pulp Stem Cells Boyle, Michael Chun, Crystal Strojny, Chelsee Narayanan, Raghuvaran Bartholomew, Amelia Sundivakkam, Premanand Alapati, Satish PLoS One Research Article Dental-pulp tissue is often exposed to inflammatory injury. Sequested growth factors or angiogenic signaling proteins that are released following inflammatory injury play a pivotal role in the formation of reparative dentin. While limited or moderate angiogenesis may be helpful for dental pulp maintenance, the induction of significant level of angiogenesis is probably highly detrimental. Hitherto, several studies have addressed the effects of proinflammatory stimuli on the survival and differentiation of dental-pulp stem cells (DPSC), in vitro. However, the mechanisms communal to the inflammatory and angiogenic signaling involved in DPSC survival and differentiation remain unknown. Our studies observed that short-term exposure to TNF-α (6 and 12 hours [hrs]) induced apoptosis with an upregulation of VEGF expression and NF-κB signaling. However, long-term (chronic) exposure (14 days) to TNF-α resulted in an increased proliferation with a concomitant shortening of the telomere length. Interestingly, DPSC pretreated with Nemo binding domain (NBD) peptide (a cell permeable NF-κB inhibitor) significantly ameliorated TNF-α- and/or VEGF-induced proliferation and the shortening of telomere length. NBD peptide pretreatment significantly improved TNF-α-induced downregulation of proteins essential for differentiation, such as bone morphogenic proteins (BMP)-1 & 2, BMP receptor isoforms-1&2, trasnforming growth factor (TGF), osteoactivin and osteocalcin. Additionally, inhibition of NF-κB signaling markedly increased the mineralization potential, a process abrogated by chronic exposure to TNF-α. Thus, our studies demonstrated that chronic inflammation mediates telomere shortening via NF-κB signaling in human DPSC. Resultant chromosomal instability leads to an emergence of increased proliferation of DPSC, while negatively regulating the differentiation of DPSC, in vitro. Public Library of Science 2014-11-26 /pmc/articles/PMC4245135/ /pubmed/25427002 http://dx.doi.org/10.1371/journal.pone.0113419 Text en © 2014 Boyle et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Boyle, Michael
Chun, Crystal
Strojny, Chelsee
Narayanan, Raghuvaran
Bartholomew, Amelia
Sundivakkam, Premanand
Alapati, Satish
Chronic Inflammation and Angiogenic Signaling Axis Impairs Differentiation of Dental-Pulp Stem Cells
title Chronic Inflammation and Angiogenic Signaling Axis Impairs Differentiation of Dental-Pulp Stem Cells
title_full Chronic Inflammation and Angiogenic Signaling Axis Impairs Differentiation of Dental-Pulp Stem Cells
title_fullStr Chronic Inflammation and Angiogenic Signaling Axis Impairs Differentiation of Dental-Pulp Stem Cells
title_full_unstemmed Chronic Inflammation and Angiogenic Signaling Axis Impairs Differentiation of Dental-Pulp Stem Cells
title_short Chronic Inflammation and Angiogenic Signaling Axis Impairs Differentiation of Dental-Pulp Stem Cells
title_sort chronic inflammation and angiogenic signaling axis impairs differentiation of dental-pulp stem cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4245135/
https://www.ncbi.nlm.nih.gov/pubmed/25427002
http://dx.doi.org/10.1371/journal.pone.0113419
work_keys_str_mv AT boylemichael chronicinflammationandangiogenicsignalingaxisimpairsdifferentiationofdentalpulpstemcells
AT chuncrystal chronicinflammationandangiogenicsignalingaxisimpairsdifferentiationofdentalpulpstemcells
AT strojnychelsee chronicinflammationandangiogenicsignalingaxisimpairsdifferentiationofdentalpulpstemcells
AT narayananraghuvaran chronicinflammationandangiogenicsignalingaxisimpairsdifferentiationofdentalpulpstemcells
AT bartholomewamelia chronicinflammationandangiogenicsignalingaxisimpairsdifferentiationofdentalpulpstemcells
AT sundivakkampremanand chronicinflammationandangiogenicsignalingaxisimpairsdifferentiationofdentalpulpstemcells
AT alapatisatish chronicinflammationandangiogenicsignalingaxisimpairsdifferentiationofdentalpulpstemcells