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Fabrication and Pilot In Vivo Study of a Collagen-BDDGE-Elastin Core-Shell Scaffold for Tendon Regeneration

The development of bio-devices for complete regeneration of ligament and tendon tissues is presently one of the biggest challenges in tissue engineering. Such device must simultaneously possess optimal mechanical performance, suitable porous structure, and biocompatible microenvironment. This study...

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Autores principales: Sandri, Monica, Filardo, Giuseppe, Kon, Elizaveta, Panseri, Silvia, Montesi, Monica, Iafisco, Michele, Savini, Elisa, Sprio, Simone, Cunha, Carla, Giavaresi, Gianluca, Veronesi, Francesca, Fini, Milena, Salvatore, Luca, Sannino, Alessandro, Marcacci, Maurilio, Tampieri, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4923187/
https://www.ncbi.nlm.nih.gov/pubmed/27446909
http://dx.doi.org/10.3389/fbioe.2016.00052
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author Sandri, Monica
Filardo, Giuseppe
Kon, Elizaveta
Panseri, Silvia
Montesi, Monica
Iafisco, Michele
Savini, Elisa
Sprio, Simone
Cunha, Carla
Giavaresi, Gianluca
Veronesi, Francesca
Fini, Milena
Salvatore, Luca
Sannino, Alessandro
Marcacci, Maurilio
Tampieri, Anna
author_facet Sandri, Monica
Filardo, Giuseppe
Kon, Elizaveta
Panseri, Silvia
Montesi, Monica
Iafisco, Michele
Savini, Elisa
Sprio, Simone
Cunha, Carla
Giavaresi, Gianluca
Veronesi, Francesca
Fini, Milena
Salvatore, Luca
Sannino, Alessandro
Marcacci, Maurilio
Tampieri, Anna
author_sort Sandri, Monica
collection PubMed
description The development of bio-devices for complete regeneration of ligament and tendon tissues is presently one of the biggest challenges in tissue engineering. Such device must simultaneously possess optimal mechanical performance, suitable porous structure, and biocompatible microenvironment. This study proposes a novel collagen-BDDGE-elastin (CBE)-based device for tendon tissue engineering, by the combination of two different modules: (i) a load-bearing, non-porous, “core scaffold” developed by braiding CBE membranes fabricated via an evaporative process and (ii) a hollow, highly porous, “shell scaffold” obtained by uniaxial freezing followed by freeze-drying of CBE suspension, designed to function as a physical guide and reservoir of cells to promote the regenerative process. Both core and shell materials demonstrated good cytocompatibility in vitro, and notably, the porous shell architecture directed cell alignment and population within the sample. Finally, a prototype of the core module was implanted in a rat tendon lesion model, and histological analysis demonstrated its safety, biocompatibility, and ability to induce tendon regeneration. Overall, our results indicate that such device may have the potential to support and induce in situ tendon regeneration.
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spelling pubmed-49231872016-07-21 Fabrication and Pilot In Vivo Study of a Collagen-BDDGE-Elastin Core-Shell Scaffold for Tendon Regeneration Sandri, Monica Filardo, Giuseppe Kon, Elizaveta Panseri, Silvia Montesi, Monica Iafisco, Michele Savini, Elisa Sprio, Simone Cunha, Carla Giavaresi, Gianluca Veronesi, Francesca Fini, Milena Salvatore, Luca Sannino, Alessandro Marcacci, Maurilio Tampieri, Anna Front Bioeng Biotechnol Bioengineering and Biotechnology The development of bio-devices for complete regeneration of ligament and tendon tissues is presently one of the biggest challenges in tissue engineering. Such device must simultaneously possess optimal mechanical performance, suitable porous structure, and biocompatible microenvironment. This study proposes a novel collagen-BDDGE-elastin (CBE)-based device for tendon tissue engineering, by the combination of two different modules: (i) a load-bearing, non-porous, “core scaffold” developed by braiding CBE membranes fabricated via an evaporative process and (ii) a hollow, highly porous, “shell scaffold” obtained by uniaxial freezing followed by freeze-drying of CBE suspension, designed to function as a physical guide and reservoir of cells to promote the regenerative process. Both core and shell materials demonstrated good cytocompatibility in vitro, and notably, the porous shell architecture directed cell alignment and population within the sample. Finally, a prototype of the core module was implanted in a rat tendon lesion model, and histological analysis demonstrated its safety, biocompatibility, and ability to induce tendon regeneration. Overall, our results indicate that such device may have the potential to support and induce in situ tendon regeneration. Frontiers Media S.A. 2016-06-28 /pmc/articles/PMC4923187/ /pubmed/27446909 http://dx.doi.org/10.3389/fbioe.2016.00052 Text en Copyright © 2016 Sandri, Filardo, Kon, Panseri, Montesi, Iafisco, Savini, Sprio, Cunha, Giavaresi, Veronesi, Fini, Salvatore, Sannino, Marcacci and Tampieri. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Bioengineering and Biotechnology
Sandri, Monica
Filardo, Giuseppe
Kon, Elizaveta
Panseri, Silvia
Montesi, Monica
Iafisco, Michele
Savini, Elisa
Sprio, Simone
Cunha, Carla
Giavaresi, Gianluca
Veronesi, Francesca
Fini, Milena
Salvatore, Luca
Sannino, Alessandro
Marcacci, Maurilio
Tampieri, Anna
Fabrication and Pilot In Vivo Study of a Collagen-BDDGE-Elastin Core-Shell Scaffold for Tendon Regeneration
title Fabrication and Pilot In Vivo Study of a Collagen-BDDGE-Elastin Core-Shell Scaffold for Tendon Regeneration
title_full Fabrication and Pilot In Vivo Study of a Collagen-BDDGE-Elastin Core-Shell Scaffold for Tendon Regeneration
title_fullStr Fabrication and Pilot In Vivo Study of a Collagen-BDDGE-Elastin Core-Shell Scaffold for Tendon Regeneration
title_full_unstemmed Fabrication and Pilot In Vivo Study of a Collagen-BDDGE-Elastin Core-Shell Scaffold for Tendon Regeneration
title_short Fabrication and Pilot In Vivo Study of a Collagen-BDDGE-Elastin Core-Shell Scaffold for Tendon Regeneration
title_sort fabrication and pilot in vivo study of a collagen-bddge-elastin core-shell scaffold for tendon regeneration
topic Bioengineering and Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4923187/
https://www.ncbi.nlm.nih.gov/pubmed/27446909
http://dx.doi.org/10.3389/fbioe.2016.00052
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