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Inducing Angiogenesis in the Nucleus Pulposus

Bone morphogenetic protein (BMP) gene delivery to Lewis rat lumbar intervertebral discs (IVDs) drives bone formation anterior and external to the IVD, suggesting the IVD is inhospitable to osteogenesis. This study was designed to determine if IVD destruction with a proteoglycanase, and/or generating...

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Autores principales: Damle, Sheela R., Krzyzanowska, Agata K., Korsun, Maximilian K., Morse, Kyle W., Gilbert, Susannah, Kim, Han Jo, Boachie-Adjei, Oheneba, Rawlins, Bernard A., van der Meulen, Marjolein C. H., Greenblatt, Matthew B., Hidaka, Chisa, Cunningham, Matthew E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10605635/
https://www.ncbi.nlm.nih.gov/pubmed/37887332
http://dx.doi.org/10.3390/cells12202488
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author Damle, Sheela R.
Krzyzanowska, Agata K.
Korsun, Maximilian K.
Morse, Kyle W.
Gilbert, Susannah
Kim, Han Jo
Boachie-Adjei, Oheneba
Rawlins, Bernard A.
van der Meulen, Marjolein C. H.
Greenblatt, Matthew B.
Hidaka, Chisa
Cunningham, Matthew E.
author_facet Damle, Sheela R.
Krzyzanowska, Agata K.
Korsun, Maximilian K.
Morse, Kyle W.
Gilbert, Susannah
Kim, Han Jo
Boachie-Adjei, Oheneba
Rawlins, Bernard A.
van der Meulen, Marjolein C. H.
Greenblatt, Matthew B.
Hidaka, Chisa
Cunningham, Matthew E.
author_sort Damle, Sheela R.
collection PubMed
description Bone morphogenetic protein (BMP) gene delivery to Lewis rat lumbar intervertebral discs (IVDs) drives bone formation anterior and external to the IVD, suggesting the IVD is inhospitable to osteogenesis. This study was designed to determine if IVD destruction with a proteoglycanase, and/or generating an IVD blood supply by gene delivery of an angiogenic growth factor, could render the IVD permissive to intra-discal BMP-driven osteogenesis and fusion. Surgical intra-discal delivery of naïve or gene-programmed cells (BMP2/BMP7 co-expressing or VEGF(165) expressing) +/- purified chondroitinase-ABC (chABC) in all permutations was performed between lumbar 4/5 and L5/6 vertebrae, and radiographic, histology, and biomechanics endpoints were collected. Follow-up anti-sFlt Western blotting was performed. BMP and VEGF/BMP treatments had the highest stiffness, bone production and fusion. Bone was induced anterior to the IVD, and was not intra-discal from any treatment. chABC impaired BMP-driven osteogenesis, decreased histological staining for IVD proteoglycans, and made the IVD permissive to angiogenesis. A soluble fragment of VEGF Receptor-1 (sFlt) was liberated from the IVD matrix by incubation with chABC, suggesting dysregulation of the sFlt matrix attachment is a possible mechanism for the chABC-mediated IVD angiogenesis we observed. Based on these results, the IVD can be manipulated to foster vascular invasion, and by extension, possibly osteogenesis.
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spelling pubmed-106056352023-10-28 Inducing Angiogenesis in the Nucleus Pulposus Damle, Sheela R. Krzyzanowska, Agata K. Korsun, Maximilian K. Morse, Kyle W. Gilbert, Susannah Kim, Han Jo Boachie-Adjei, Oheneba Rawlins, Bernard A. van der Meulen, Marjolein C. H. Greenblatt, Matthew B. Hidaka, Chisa Cunningham, Matthew E. Cells Article Bone morphogenetic protein (BMP) gene delivery to Lewis rat lumbar intervertebral discs (IVDs) drives bone formation anterior and external to the IVD, suggesting the IVD is inhospitable to osteogenesis. This study was designed to determine if IVD destruction with a proteoglycanase, and/or generating an IVD blood supply by gene delivery of an angiogenic growth factor, could render the IVD permissive to intra-discal BMP-driven osteogenesis and fusion. Surgical intra-discal delivery of naïve or gene-programmed cells (BMP2/BMP7 co-expressing or VEGF(165) expressing) +/- purified chondroitinase-ABC (chABC) in all permutations was performed between lumbar 4/5 and L5/6 vertebrae, and radiographic, histology, and biomechanics endpoints were collected. Follow-up anti-sFlt Western blotting was performed. BMP and VEGF/BMP treatments had the highest stiffness, bone production and fusion. Bone was induced anterior to the IVD, and was not intra-discal from any treatment. chABC impaired BMP-driven osteogenesis, decreased histological staining for IVD proteoglycans, and made the IVD permissive to angiogenesis. A soluble fragment of VEGF Receptor-1 (sFlt) was liberated from the IVD matrix by incubation with chABC, suggesting dysregulation of the sFlt matrix attachment is a possible mechanism for the chABC-mediated IVD angiogenesis we observed. Based on these results, the IVD can be manipulated to foster vascular invasion, and by extension, possibly osteogenesis. MDPI 2023-10-19 /pmc/articles/PMC10605635/ /pubmed/37887332 http://dx.doi.org/10.3390/cells12202488 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Damle, Sheela R.
Krzyzanowska, Agata K.
Korsun, Maximilian K.
Morse, Kyle W.
Gilbert, Susannah
Kim, Han Jo
Boachie-Adjei, Oheneba
Rawlins, Bernard A.
van der Meulen, Marjolein C. H.
Greenblatt, Matthew B.
Hidaka, Chisa
Cunningham, Matthew E.
Inducing Angiogenesis in the Nucleus Pulposus
title Inducing Angiogenesis in the Nucleus Pulposus
title_full Inducing Angiogenesis in the Nucleus Pulposus
title_fullStr Inducing Angiogenesis in the Nucleus Pulposus
title_full_unstemmed Inducing Angiogenesis in the Nucleus Pulposus
title_short Inducing Angiogenesis in the Nucleus Pulposus
title_sort inducing angiogenesis in the nucleus pulposus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10605635/
https://www.ncbi.nlm.nih.gov/pubmed/37887332
http://dx.doi.org/10.3390/cells12202488
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