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An elastin-like recombinamer-based bioactive hydrogel embedded with mesenchymal stromal cells as an injectable scaffold for osteochondral repair

The aim of this study was to evaluate injectable, in situ cross-linkable elastin-like recombinamers (ELRs) for osteochondral repair. Both the ELR-based hydrogel alone and the ELR-based hydrogel embedded with rabbit mesenchymal stromal cells (rMSCs) were tested for the regeneration of critical subcho...

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Autores principales: Cipriani, Filippo, Ariño Palao, Blanca, Gonzalez de Torre, Israel, Vega Castrillo, Aurelio, Aguado Hernández, Héctor José, Alonso Rodrigo, Matilde, Àlvarez Barcia, Angel José, Sanchez, Ana, García Diaz, Verónica, Lopez Peña, Monica, Rodriguez-Cabello, José Carlos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6897338/
https://www.ncbi.nlm.nih.gov/pubmed/31827887
http://dx.doi.org/10.1093/rb/rbz023
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author Cipriani, Filippo
Ariño Palao, Blanca
Gonzalez de Torre, Israel
Vega Castrillo, Aurelio
Aguado Hernández, Héctor José
Alonso Rodrigo, Matilde
Àlvarez Barcia, Angel José
Sanchez, Ana
García Diaz, Verónica
Lopez Peña, Monica
Rodriguez-Cabello, José Carlos
author_facet Cipriani, Filippo
Ariño Palao, Blanca
Gonzalez de Torre, Israel
Vega Castrillo, Aurelio
Aguado Hernández, Héctor José
Alonso Rodrigo, Matilde
Àlvarez Barcia, Angel José
Sanchez, Ana
García Diaz, Verónica
Lopez Peña, Monica
Rodriguez-Cabello, José Carlos
author_sort Cipriani, Filippo
collection PubMed
description The aim of this study was to evaluate injectable, in situ cross-linkable elastin-like recombinamers (ELRs) for osteochondral repair. Both the ELR-based hydrogel alone and the ELR-based hydrogel embedded with rabbit mesenchymal stromal cells (rMSCs) were tested for the regeneration of critical subchondral defects in 10 New Zealand rabbits. Thus, cylindrical osteochondral defects were filled with an aqueous solution of ELRs and the animals sacrificed at 4 months for histological and gross evaluation of features of biomaterial performance, including integration, cellular infiltration, surrounding matrix quality and the new matrix in the defects. Although both approaches helped cartilage regeneration, the results suggest that the specific composition of the rMSC-containing hydrogel permitted adequate bone regeneration, whereas the ELR-based hydrogel alone led to an excellent regeneration of hyaline cartilage. In conclusion, the ELR cross-linker solution can be easily delivered and forms a stable well-integrated hydrogel that supports infiltration and de novo matrix synthesis.
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spelling pubmed-68973382019-12-11 An elastin-like recombinamer-based bioactive hydrogel embedded with mesenchymal stromal cells as an injectable scaffold for osteochondral repair Cipriani, Filippo Ariño Palao, Blanca Gonzalez de Torre, Israel Vega Castrillo, Aurelio Aguado Hernández, Héctor José Alonso Rodrigo, Matilde Àlvarez Barcia, Angel José Sanchez, Ana García Diaz, Verónica Lopez Peña, Monica Rodriguez-Cabello, José Carlos Regen Biomater Research Articles The aim of this study was to evaluate injectable, in situ cross-linkable elastin-like recombinamers (ELRs) for osteochondral repair. Both the ELR-based hydrogel alone and the ELR-based hydrogel embedded with rabbit mesenchymal stromal cells (rMSCs) were tested for the regeneration of critical subchondral defects in 10 New Zealand rabbits. Thus, cylindrical osteochondral defects were filled with an aqueous solution of ELRs and the animals sacrificed at 4 months for histological and gross evaluation of features of biomaterial performance, including integration, cellular infiltration, surrounding matrix quality and the new matrix in the defects. Although both approaches helped cartilage regeneration, the results suggest that the specific composition of the rMSC-containing hydrogel permitted adequate bone regeneration, whereas the ELR-based hydrogel alone led to an excellent regeneration of hyaline cartilage. In conclusion, the ELR cross-linker solution can be easily delivered and forms a stable well-integrated hydrogel that supports infiltration and de novo matrix synthesis. Oxford University Press 2019-12 2019-05-20 /pmc/articles/PMC6897338/ /pubmed/31827887 http://dx.doi.org/10.1093/rb/rbz023 Text en © The Author(s) 2019. Published by Oxford University Press. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Cipriani, Filippo
Ariño Palao, Blanca
Gonzalez de Torre, Israel
Vega Castrillo, Aurelio
Aguado Hernández, Héctor José
Alonso Rodrigo, Matilde
Àlvarez Barcia, Angel José
Sanchez, Ana
García Diaz, Verónica
Lopez Peña, Monica
Rodriguez-Cabello, José Carlos
An elastin-like recombinamer-based bioactive hydrogel embedded with mesenchymal stromal cells as an injectable scaffold for osteochondral repair
title An elastin-like recombinamer-based bioactive hydrogel embedded with mesenchymal stromal cells as an injectable scaffold for osteochondral repair
title_full An elastin-like recombinamer-based bioactive hydrogel embedded with mesenchymal stromal cells as an injectable scaffold for osteochondral repair
title_fullStr An elastin-like recombinamer-based bioactive hydrogel embedded with mesenchymal stromal cells as an injectable scaffold for osteochondral repair
title_full_unstemmed An elastin-like recombinamer-based bioactive hydrogel embedded with mesenchymal stromal cells as an injectable scaffold for osteochondral repair
title_short An elastin-like recombinamer-based bioactive hydrogel embedded with mesenchymal stromal cells as an injectable scaffold for osteochondral repair
title_sort elastin-like recombinamer-based bioactive hydrogel embedded with mesenchymal stromal cells as an injectable scaffold for osteochondral repair
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6897338/
https://www.ncbi.nlm.nih.gov/pubmed/31827887
http://dx.doi.org/10.1093/rb/rbz023
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