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Ex Vivo Preservation of Ovine Periosteum Using a Perfusion Bioreactor System

Periosteum is a highly vascularized membrane lining the surface of bones. It plays essential roles in bone repair following injury and reconstruction following invasive surgeries. To broaden the use of periosteum, including for augmenting in vitro bone engineering and/or in vivo bone repair, we have...

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Autores principales: Xin, Hai, Romanazzo, Sara, Tomaskovic-Crook, Eva, Mitchell, Timothy C., Hung, Jui Chien, Wise, Steven G., Cheng, Kai, Al Maruf, D S Abdullah, Stokan, Murray J., Manzie, Timothy G. H., Parthasarathi, Krishnan, Cheung, Veronica K. Y., Gupta, Ruta, Ly, Mark, Pulitano, Carlo, Wise, Innes K., Crook, Jeremy M., Clark, Jonathan R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10340137/
https://www.ncbi.nlm.nih.gov/pubmed/37443758
http://dx.doi.org/10.3390/cells12131724
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author Xin, Hai
Romanazzo, Sara
Tomaskovic-Crook, Eva
Mitchell, Timothy C.
Hung, Jui Chien
Wise, Steven G.
Cheng, Kai
Al Maruf, D S Abdullah
Stokan, Murray J.
Manzie, Timothy G. H.
Parthasarathi, Krishnan
Cheung, Veronica K. Y.
Gupta, Ruta
Ly, Mark
Pulitano, Carlo
Wise, Innes K.
Crook, Jeremy M.
Clark, Jonathan R.
author_facet Xin, Hai
Romanazzo, Sara
Tomaskovic-Crook, Eva
Mitchell, Timothy C.
Hung, Jui Chien
Wise, Steven G.
Cheng, Kai
Al Maruf, D S Abdullah
Stokan, Murray J.
Manzie, Timothy G. H.
Parthasarathi, Krishnan
Cheung, Veronica K. Y.
Gupta, Ruta
Ly, Mark
Pulitano, Carlo
Wise, Innes K.
Crook, Jeremy M.
Clark, Jonathan R.
author_sort Xin, Hai
collection PubMed
description Periosteum is a highly vascularized membrane lining the surface of bones. It plays essential roles in bone repair following injury and reconstruction following invasive surgeries. To broaden the use of periosteum, including for augmenting in vitro bone engineering and/or in vivo bone repair, we have developed an ex vivo perfusion bioreactor system to maintain the cellular viability and metabolism of surgically resected periosteal flaps. Each specimen was placed in a 3D printed bioreactor connected to a peristaltic pump designed for the optimal flow rates of tissue perfusate. Nutrients and oxygen were perfused via the periosteal arteries to mimic physiological conditions. Biochemical assays and histological staining indicate component cell viability after perfusion for almost 4 weeks. Our work provides the proof-of-concept of ex vivo periosteum perfusion for long-term tissue preservation, paving the way for innovative bone engineering approaches that use autotransplanted periosteum to enhance in vivo bone repair.
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spelling pubmed-103401372023-07-14 Ex Vivo Preservation of Ovine Periosteum Using a Perfusion Bioreactor System Xin, Hai Romanazzo, Sara Tomaskovic-Crook, Eva Mitchell, Timothy C. Hung, Jui Chien Wise, Steven G. Cheng, Kai Al Maruf, D S Abdullah Stokan, Murray J. Manzie, Timothy G. H. Parthasarathi, Krishnan Cheung, Veronica K. Y. Gupta, Ruta Ly, Mark Pulitano, Carlo Wise, Innes K. Crook, Jeremy M. Clark, Jonathan R. Cells Communication Periosteum is a highly vascularized membrane lining the surface of bones. It plays essential roles in bone repair following injury and reconstruction following invasive surgeries. To broaden the use of periosteum, including for augmenting in vitro bone engineering and/or in vivo bone repair, we have developed an ex vivo perfusion bioreactor system to maintain the cellular viability and metabolism of surgically resected periosteal flaps. Each specimen was placed in a 3D printed bioreactor connected to a peristaltic pump designed for the optimal flow rates of tissue perfusate. Nutrients and oxygen were perfused via the periosteal arteries to mimic physiological conditions. Biochemical assays and histological staining indicate component cell viability after perfusion for almost 4 weeks. Our work provides the proof-of-concept of ex vivo periosteum perfusion for long-term tissue preservation, paving the way for innovative bone engineering approaches that use autotransplanted periosteum to enhance in vivo bone repair. MDPI 2023-06-27 /pmc/articles/PMC10340137/ /pubmed/37443758 http://dx.doi.org/10.3390/cells12131724 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 Communication
Xin, Hai
Romanazzo, Sara
Tomaskovic-Crook, Eva
Mitchell, Timothy C.
Hung, Jui Chien
Wise, Steven G.
Cheng, Kai
Al Maruf, D S Abdullah
Stokan, Murray J.
Manzie, Timothy G. H.
Parthasarathi, Krishnan
Cheung, Veronica K. Y.
Gupta, Ruta
Ly, Mark
Pulitano, Carlo
Wise, Innes K.
Crook, Jeremy M.
Clark, Jonathan R.
Ex Vivo Preservation of Ovine Periosteum Using a Perfusion Bioreactor System
title Ex Vivo Preservation of Ovine Periosteum Using a Perfusion Bioreactor System
title_full Ex Vivo Preservation of Ovine Periosteum Using a Perfusion Bioreactor System
title_fullStr Ex Vivo Preservation of Ovine Periosteum Using a Perfusion Bioreactor System
title_full_unstemmed Ex Vivo Preservation of Ovine Periosteum Using a Perfusion Bioreactor System
title_short Ex Vivo Preservation of Ovine Periosteum Using a Perfusion Bioreactor System
title_sort ex vivo preservation of ovine periosteum using a perfusion bioreactor system
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10340137/
https://www.ncbi.nlm.nih.gov/pubmed/37443758
http://dx.doi.org/10.3390/cells12131724
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