Cargando…

Biologic canine and human intervertebral disc repair by notochordal cell-derived matrix: from bench towards bedside

The socioeconomic burden of chronic back pain related to intervertebral disc (IVD) disease is high and current treatments are only symptomatic. Minimally invasive strategies that promote biological IVD repair should address this unmet need. Notochordal cells (NCs) are replaced by chondrocyte-like ce...

Descripción completa

Detalles Bibliográficos
Autores principales: Bach, Frances C., Tellegen, Anna R., Beukers, Martijn, Miranda-Bedate, Alberto, Teunissen, Michelle, de Jong, Willem A.M., de Vries, Stefan A.H., Creemers, Laura B., Benz, Karin, Meij, Björn P., Ito, Keita, Tryfonidou, Marianna A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5995168/
https://www.ncbi.nlm.nih.gov/pubmed/29899873
http://dx.doi.org/10.18632/oncotarget.25476
_version_ 1783330562563375104
author Bach, Frances C.
Tellegen, Anna R.
Beukers, Martijn
Miranda-Bedate, Alberto
Teunissen, Michelle
de Jong, Willem A.M.
de Vries, Stefan A.H.
Creemers, Laura B.
Benz, Karin
Meij, Björn P.
Ito, Keita
Tryfonidou, Marianna A.
author_facet Bach, Frances C.
Tellegen, Anna R.
Beukers, Martijn
Miranda-Bedate, Alberto
Teunissen, Michelle
de Jong, Willem A.M.
de Vries, Stefan A.H.
Creemers, Laura B.
Benz, Karin
Meij, Björn P.
Ito, Keita
Tryfonidou, Marianna A.
author_sort Bach, Frances C.
collection PubMed
description The socioeconomic burden of chronic back pain related to intervertebral disc (IVD) disease is high and current treatments are only symptomatic. Minimally invasive strategies that promote biological IVD repair should address this unmet need. Notochordal cells (NCs) are replaced by chondrocyte-like cells (CLCs) during IVD maturation and degeneration. The regenerative potential of NC-secreted substances on CLCs and mesenchymal stromal cells (MSCs) has already been demonstrated. However, identification of these substances remains elusive. Innovatively, this study exploits the regenerative NC potential by using healthy porcine NC-derived matrix (NCM) and employs the dog as a clinically relevant translational model. NCM increased the glycosaminoglycan and DNA content of human and canine CLC aggregates and facilitated chondrogenic differentiation of canine MSCs in vitro. Based on these results, NCM, MSCs and NCM+MSCs were injected in mildly (spontaneously) and moderately (induced) degenerated canine IVDs in vivo and, after six months of treatment, were analyzed. NCM injected in moderately (induced) degenerated canine IVDs exerted beneficial effects at the macroscopic and MRI level, induced collagen type II-rich extracellular matrix production, improved the disc height, and ameliorated local inflammation. MSCs exerted no (additive) effects. In conclusion, NCM induced in vivo regenerative effects on degenerated canine IVDs. NCM may, comparable to demineralized bone matrix in bone regeneration, serve as ‘instructive matrix’, by locally releasing growth factors and facilitating tissue repair. Therefore, intradiscal NCM injection could be a promising regenerative treatment for IVD disease, circumventing the cumbersome identification of bioactive NC-secreted substances.
format Online
Article
Text
id pubmed-5995168
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-59951682018-06-13 Biologic canine and human intervertebral disc repair by notochordal cell-derived matrix: from bench towards bedside Bach, Frances C. Tellegen, Anna R. Beukers, Martijn Miranda-Bedate, Alberto Teunissen, Michelle de Jong, Willem A.M. de Vries, Stefan A.H. Creemers, Laura B. Benz, Karin Meij, Björn P. Ito, Keita Tryfonidou, Marianna A. Oncotarget Research Paper The socioeconomic burden of chronic back pain related to intervertebral disc (IVD) disease is high and current treatments are only symptomatic. Minimally invasive strategies that promote biological IVD repair should address this unmet need. Notochordal cells (NCs) are replaced by chondrocyte-like cells (CLCs) during IVD maturation and degeneration. The regenerative potential of NC-secreted substances on CLCs and mesenchymal stromal cells (MSCs) has already been demonstrated. However, identification of these substances remains elusive. Innovatively, this study exploits the regenerative NC potential by using healthy porcine NC-derived matrix (NCM) and employs the dog as a clinically relevant translational model. NCM increased the glycosaminoglycan and DNA content of human and canine CLC aggregates and facilitated chondrogenic differentiation of canine MSCs in vitro. Based on these results, NCM, MSCs and NCM+MSCs were injected in mildly (spontaneously) and moderately (induced) degenerated canine IVDs in vivo and, after six months of treatment, were analyzed. NCM injected in moderately (induced) degenerated canine IVDs exerted beneficial effects at the macroscopic and MRI level, induced collagen type II-rich extracellular matrix production, improved the disc height, and ameliorated local inflammation. MSCs exerted no (additive) effects. In conclusion, NCM induced in vivo regenerative effects on degenerated canine IVDs. NCM may, comparable to demineralized bone matrix in bone regeneration, serve as ‘instructive matrix’, by locally releasing growth factors and facilitating tissue repair. Therefore, intradiscal NCM injection could be a promising regenerative treatment for IVD disease, circumventing the cumbersome identification of bioactive NC-secreted substances. Impact Journals LLC 2018-05-29 /pmc/articles/PMC5995168/ /pubmed/29899873 http://dx.doi.org/10.18632/oncotarget.25476 Text en Copyright: © 2018 Bach et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Bach, Frances C.
Tellegen, Anna R.
Beukers, Martijn
Miranda-Bedate, Alberto
Teunissen, Michelle
de Jong, Willem A.M.
de Vries, Stefan A.H.
Creemers, Laura B.
Benz, Karin
Meij, Björn P.
Ito, Keita
Tryfonidou, Marianna A.
Biologic canine and human intervertebral disc repair by notochordal cell-derived matrix: from bench towards bedside
title Biologic canine and human intervertebral disc repair by notochordal cell-derived matrix: from bench towards bedside
title_full Biologic canine and human intervertebral disc repair by notochordal cell-derived matrix: from bench towards bedside
title_fullStr Biologic canine and human intervertebral disc repair by notochordal cell-derived matrix: from bench towards bedside
title_full_unstemmed Biologic canine and human intervertebral disc repair by notochordal cell-derived matrix: from bench towards bedside
title_short Biologic canine and human intervertebral disc repair by notochordal cell-derived matrix: from bench towards bedside
title_sort biologic canine and human intervertebral disc repair by notochordal cell-derived matrix: from bench towards bedside
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5995168/
https://www.ncbi.nlm.nih.gov/pubmed/29899873
http://dx.doi.org/10.18632/oncotarget.25476
work_keys_str_mv AT bachfrancesc biologiccanineandhumanintervertebraldiscrepairbynotochordalcellderivedmatrixfrombenchtowardsbedside
AT tellegenannar biologiccanineandhumanintervertebraldiscrepairbynotochordalcellderivedmatrixfrombenchtowardsbedside
AT beukersmartijn biologiccanineandhumanintervertebraldiscrepairbynotochordalcellderivedmatrixfrombenchtowardsbedside
AT mirandabedatealberto biologiccanineandhumanintervertebraldiscrepairbynotochordalcellderivedmatrixfrombenchtowardsbedside
AT teunissenmichelle biologiccanineandhumanintervertebraldiscrepairbynotochordalcellderivedmatrixfrombenchtowardsbedside
AT dejongwillemam biologiccanineandhumanintervertebraldiscrepairbynotochordalcellderivedmatrixfrombenchtowardsbedside
AT devriesstefanah biologiccanineandhumanintervertebraldiscrepairbynotochordalcellderivedmatrixfrombenchtowardsbedside
AT creemerslaurab biologiccanineandhumanintervertebraldiscrepairbynotochordalcellderivedmatrixfrombenchtowardsbedside
AT benzkarin biologiccanineandhumanintervertebraldiscrepairbynotochordalcellderivedmatrixfrombenchtowardsbedside
AT meijbjornp biologiccanineandhumanintervertebraldiscrepairbynotochordalcellderivedmatrixfrombenchtowardsbedside
AT itokeita biologiccanineandhumanintervertebraldiscrepairbynotochordalcellderivedmatrixfrombenchtowardsbedside
AT tryfonidoumariannaa biologiccanineandhumanintervertebraldiscrepairbynotochordalcellderivedmatrixfrombenchtowardsbedside