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Decellularized Porcine Cartilage Scaffold; Validation of Decellularization and Evaluation of Biomarkers of Chondrogenesis

Osteoarthritis is a major concern in the United States and worldwide. Current non-surgical and surgical approaches alleviate pain but show little evidence of cartilage restoration. Cell-based treatments may hold promise for the regeneration of hyaline cartilage-like tissue at the site of injury or w...

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Autores principales: Stone, Roxanne N., Frahs, Stephanie M., Hardy, Makenna J., Fujimoto, Akina, Pu, Xinzhu, Keller-Peck, Cynthia, Oxford, Julia Thom
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8230108/
https://www.ncbi.nlm.nih.gov/pubmed/34207917
http://dx.doi.org/10.3390/ijms22126241
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author Stone, Roxanne N.
Frahs, Stephanie M.
Hardy, Makenna J.
Fujimoto, Akina
Pu, Xinzhu
Keller-Peck, Cynthia
Oxford, Julia Thom
author_facet Stone, Roxanne N.
Frahs, Stephanie M.
Hardy, Makenna J.
Fujimoto, Akina
Pu, Xinzhu
Keller-Peck, Cynthia
Oxford, Julia Thom
author_sort Stone, Roxanne N.
collection PubMed
description Osteoarthritis is a major concern in the United States and worldwide. Current non-surgical and surgical approaches alleviate pain but show little evidence of cartilage restoration. Cell-based treatments may hold promise for the regeneration of hyaline cartilage-like tissue at the site of injury or wear. Cell–cell and cell–matrix interactions have been shown to drive cell differentiation pathways. Biomaterials for clinically relevant applications can be generated from decellularized porcine auricular cartilage. This material may represent a suitable scaffold on which to seed and grow chondrocytes to create new cartilage. In this study, we used decellularization techniques to create an extracellular matrix scaffold that supports chondrocyte cell attachment and growth in tissue culture conditions. Results presented here evaluate the decellularization process histologically and molecularly. We identified new and novel biomarker profiles that may aid future cartilage decellularization efforts. Additionally, the resulting scaffold was characterized using scanning electron microscopy, fluorescence microscopy, and proteomics. Cellular response to the decellularized scaffold was evaluated by quantitative real-time PCR for gene expression analysis.
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spelling pubmed-82301082021-06-26 Decellularized Porcine Cartilage Scaffold; Validation of Decellularization and Evaluation of Biomarkers of Chondrogenesis Stone, Roxanne N. Frahs, Stephanie M. Hardy, Makenna J. Fujimoto, Akina Pu, Xinzhu Keller-Peck, Cynthia Oxford, Julia Thom Int J Mol Sci Article Osteoarthritis is a major concern in the United States and worldwide. Current non-surgical and surgical approaches alleviate pain but show little evidence of cartilage restoration. Cell-based treatments may hold promise for the regeneration of hyaline cartilage-like tissue at the site of injury or wear. Cell–cell and cell–matrix interactions have been shown to drive cell differentiation pathways. Biomaterials for clinically relevant applications can be generated from decellularized porcine auricular cartilage. This material may represent a suitable scaffold on which to seed and grow chondrocytes to create new cartilage. In this study, we used decellularization techniques to create an extracellular matrix scaffold that supports chondrocyte cell attachment and growth in tissue culture conditions. Results presented here evaluate the decellularization process histologically and molecularly. We identified new and novel biomarker profiles that may aid future cartilage decellularization efforts. Additionally, the resulting scaffold was characterized using scanning electron microscopy, fluorescence microscopy, and proteomics. Cellular response to the decellularized scaffold was evaluated by quantitative real-time PCR for gene expression analysis. MDPI 2021-06-09 /pmc/articles/PMC8230108/ /pubmed/34207917 http://dx.doi.org/10.3390/ijms22126241 Text en © 2021 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
Stone, Roxanne N.
Frahs, Stephanie M.
Hardy, Makenna J.
Fujimoto, Akina
Pu, Xinzhu
Keller-Peck, Cynthia
Oxford, Julia Thom
Decellularized Porcine Cartilage Scaffold; Validation of Decellularization and Evaluation of Biomarkers of Chondrogenesis
title Decellularized Porcine Cartilage Scaffold; Validation of Decellularization and Evaluation of Biomarkers of Chondrogenesis
title_full Decellularized Porcine Cartilage Scaffold; Validation of Decellularization and Evaluation of Biomarkers of Chondrogenesis
title_fullStr Decellularized Porcine Cartilage Scaffold; Validation of Decellularization and Evaluation of Biomarkers of Chondrogenesis
title_full_unstemmed Decellularized Porcine Cartilage Scaffold; Validation of Decellularization and Evaluation of Biomarkers of Chondrogenesis
title_short Decellularized Porcine Cartilage Scaffold; Validation of Decellularization and Evaluation of Biomarkers of Chondrogenesis
title_sort decellularized porcine cartilage scaffold; validation of decellularization and evaluation of biomarkers of chondrogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8230108/
https://www.ncbi.nlm.nih.gov/pubmed/34207917
http://dx.doi.org/10.3390/ijms22126241
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