Reticulated vitreous carbon: a useful material for cell adhesion and tissue invasion
Diverse carbon materials have been used for tissue engineering and clinical implant applications with varying success. In this study, commercially available reticulated vitreous carbon (RVC) foams were tested in vitro and in vivo for compatibility with primary cell adhesion and tissue repair. Pores...
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AO Research Institute Davos
2010-10-01
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Online Access: | http://www.ecmjournal.org/journal/papers/vol020/pdf/v020a23.pdf |
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doaj-7c8d2ab167d2403c9e5c605f39ca7a3a2020-11-24T21:04:37Zeng AO Research Institute DavosEuropean Cells & Materials1473-22622010-10-0120282294Reticulated vitreous carbon: a useful material for cell adhesion and tissue invasionMK PecR ReyesE SánchezD CarballarA DelgadoJ SantamaríaM ArrueboC EvoraDiverse carbon materials have been used for tissue engineering and clinical implant applications with varying success. In this study, commercially available reticulated vitreous carbon (RVC) foams were tested in vitro and in vivo for compatibility with primary cell adhesion and tissue repair. Pores sizes were determined as 279 ± 98 µm. No hydroxyapatite deposition was detected after immersion of the foams in simulated body fluid. Nonetheless, RVC provided an excellent support for adhesion of mesenchymal stem cells (MSCs) as well as primary chondrocytes without any surface pre-treatment. Live cell quantification revealed neutral behaviour of the material with plastic adhered chondrocytes but moderate cytotoxicity with MSCs. Yet, rabbit implanted foams exhibited good integration in subcutaneous pockets and most importantly, total defect repair in bone. Probably due to the stiffness of the material, incompatibility with cartilage regeneration was found. Interestingly and in contrast to several other carbon materials, we observed a total lack of foreign body reactions. Our results and its outstanding porous interconnectivity and availability within a wide range of pore sizes convert RVC into an attractive candidate for tissue engineering applications in a variety of bone models and for ex vivo cell expansion for regenerative medical applications.http://www.ecmjournal.org/journal/papers/vol020/pdf/v020a23.pdfReticulated vitreous carbonpore-sizeporous interconnectivitysimulated body fluidmesenchymal stroma cellschondrocytescell adhesiontissue compatibilitybone repair |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
MK Pec R Reyes E Sánchez D Carballar A Delgado J Santamaría M Arruebo C Evora |
spellingShingle |
MK Pec R Reyes E Sánchez D Carballar A Delgado J Santamaría M Arruebo C Evora Reticulated vitreous carbon: a useful material for cell adhesion and tissue invasion European Cells & Materials Reticulated vitreous carbon pore-size porous interconnectivity simulated body fluid mesenchymal stroma cells chondrocytes cell adhesion tissue compatibility bone repair |
author_facet |
MK Pec R Reyes E Sánchez D Carballar A Delgado J Santamaría M Arruebo C Evora |
author_sort |
MK Pec |
title |
Reticulated vitreous carbon: a useful material for cell adhesion and tissue invasion |
title_short |
Reticulated vitreous carbon: a useful material for cell adhesion and tissue invasion |
title_full |
Reticulated vitreous carbon: a useful material for cell adhesion and tissue invasion |
title_fullStr |
Reticulated vitreous carbon: a useful material for cell adhesion and tissue invasion |
title_full_unstemmed |
Reticulated vitreous carbon: a useful material for cell adhesion and tissue invasion |
title_sort |
reticulated vitreous carbon: a useful material for cell adhesion and tissue invasion |
publisher |
AO Research Institute Davos |
series |
European Cells & Materials |
issn |
1473-2262 |
publishDate |
2010-10-01 |
description |
Diverse carbon materials have been used for tissue engineering and clinical implant applications with varying success. In this study, commercially available reticulated vitreous carbon (RVC) foams were tested in vitro and in vivo for compatibility with primary cell adhesion and tissue repair. Pores sizes were determined as 279 ± 98 µm. No hydroxyapatite deposition was detected after immersion of the foams in simulated body fluid. Nonetheless, RVC provided an excellent support for adhesion of mesenchymal stem cells (MSCs) as well as primary chondrocytes without any surface pre-treatment. Live cell quantification revealed neutral behaviour of the material with plastic adhered chondrocytes but moderate cytotoxicity with MSCs. Yet, rabbit implanted foams exhibited good integration in subcutaneous pockets and most importantly, total defect repair in bone. Probably due to the stiffness of the material, incompatibility with cartilage regeneration was found. Interestingly and in contrast to several other carbon materials, we observed a total lack of foreign body reactions. Our results and its outstanding porous interconnectivity and availability within a wide range of pore sizes convert RVC into an attractive candidate for tissue engineering applications in a variety of bone models and for ex vivo cell expansion for regenerative medical applications. |
topic |
Reticulated vitreous carbon pore-size porous interconnectivity simulated body fluid mesenchymal stroma cells chondrocytes cell adhesion tissue compatibility bone repair |
url |
http://www.ecmjournal.org/journal/papers/vol020/pdf/v020a23.pdf |
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