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Induction of Osteogenic Differentiation of Adipose Derived Stem Cells by Microstructured Nitinol Actuator-Mediated Mechanical Stress

The development of large tissue engineered bone remains a challenge in vitro, therefore the use of hybrid-implants might offer a bridge between tissue engineering and dense metal or ceramic implants. Especially the combination of the pseudoelastic implant material Nitinol (NiTi) with adipose derived...

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Autores principales: Strauß, Sarah, Dudziak, Sonja, Hagemann, Ronny, Barcikowski, Stephan, Fliess, Malte, Israelowitz, Meir, Kracht, Dietmar, Kuhbier, Jörn W., Radtke, Christine, Reimers, Kerstin, Vogt, Peter M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3517541/
https://www.ncbi.nlm.nih.gov/pubmed/23236461
http://dx.doi.org/10.1371/journal.pone.0051264
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author Strauß, Sarah
Dudziak, Sonja
Hagemann, Ronny
Barcikowski, Stephan
Fliess, Malte
Israelowitz, Meir
Kracht, Dietmar
Kuhbier, Jörn W.
Radtke, Christine
Reimers, Kerstin
Vogt, Peter M.
author_facet Strauß, Sarah
Dudziak, Sonja
Hagemann, Ronny
Barcikowski, Stephan
Fliess, Malte
Israelowitz, Meir
Kracht, Dietmar
Kuhbier, Jörn W.
Radtke, Christine
Reimers, Kerstin
Vogt, Peter M.
author_sort Strauß, Sarah
collection PubMed
description The development of large tissue engineered bone remains a challenge in vitro, therefore the use of hybrid-implants might offer a bridge between tissue engineering and dense metal or ceramic implants. Especially the combination of the pseudoelastic implant material Nitinol (NiTi) with adipose derived stem cells (ASCs) opens new opportunities, as ASCs are able to differentiate osteogenically and therefore enhance osseointegration of implants. Due to limited knowledge about the effects of NiTi-structures manufactured by selective laser melting (SLM) on ASCs the study started with an evaluation of cytocompatibility followed by the investigation of the use of SLM-generated 3-dimensional NiTi-structures preseeded with ASCs as osteoimplant model. In this study we could demonstrate for the first time that osteogenic differentiation of ASCs can be induced by implant-mediated mechanical stimulation without support of osteogenic cell culture media. By use of an innovative implant design and synthesis via SLM-technique we achieved high rates of vital cells, proper osteogenic differentiation and mechanically loadable NiTi-scaffolds could be achieved.
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spelling pubmed-35175412012-12-12 Induction of Osteogenic Differentiation of Adipose Derived Stem Cells by Microstructured Nitinol Actuator-Mediated Mechanical Stress Strauß, Sarah Dudziak, Sonja Hagemann, Ronny Barcikowski, Stephan Fliess, Malte Israelowitz, Meir Kracht, Dietmar Kuhbier, Jörn W. Radtke, Christine Reimers, Kerstin Vogt, Peter M. PLoS One Research Article The development of large tissue engineered bone remains a challenge in vitro, therefore the use of hybrid-implants might offer a bridge between tissue engineering and dense metal or ceramic implants. Especially the combination of the pseudoelastic implant material Nitinol (NiTi) with adipose derived stem cells (ASCs) opens new opportunities, as ASCs are able to differentiate osteogenically and therefore enhance osseointegration of implants. Due to limited knowledge about the effects of NiTi-structures manufactured by selective laser melting (SLM) on ASCs the study started with an evaluation of cytocompatibility followed by the investigation of the use of SLM-generated 3-dimensional NiTi-structures preseeded with ASCs as osteoimplant model. In this study we could demonstrate for the first time that osteogenic differentiation of ASCs can be induced by implant-mediated mechanical stimulation without support of osteogenic cell culture media. By use of an innovative implant design and synthesis via SLM-technique we achieved high rates of vital cells, proper osteogenic differentiation and mechanically loadable NiTi-scaffolds could be achieved. Public Library of Science 2012-12-07 /pmc/articles/PMC3517541/ /pubmed/23236461 http://dx.doi.org/10.1371/journal.pone.0051264 Text en © 2012 Strauß et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Strauß, Sarah
Dudziak, Sonja
Hagemann, Ronny
Barcikowski, Stephan
Fliess, Malte
Israelowitz, Meir
Kracht, Dietmar
Kuhbier, Jörn W.
Radtke, Christine
Reimers, Kerstin
Vogt, Peter M.
Induction of Osteogenic Differentiation of Adipose Derived Stem Cells by Microstructured Nitinol Actuator-Mediated Mechanical Stress
title Induction of Osteogenic Differentiation of Adipose Derived Stem Cells by Microstructured Nitinol Actuator-Mediated Mechanical Stress
title_full Induction of Osteogenic Differentiation of Adipose Derived Stem Cells by Microstructured Nitinol Actuator-Mediated Mechanical Stress
title_fullStr Induction of Osteogenic Differentiation of Adipose Derived Stem Cells by Microstructured Nitinol Actuator-Mediated Mechanical Stress
title_full_unstemmed Induction of Osteogenic Differentiation of Adipose Derived Stem Cells by Microstructured Nitinol Actuator-Mediated Mechanical Stress
title_short Induction of Osteogenic Differentiation of Adipose Derived Stem Cells by Microstructured Nitinol Actuator-Mediated Mechanical Stress
title_sort induction of osteogenic differentiation of adipose derived stem cells by microstructured nitinol actuator-mediated mechanical stress
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3517541/
https://www.ncbi.nlm.nih.gov/pubmed/23236461
http://dx.doi.org/10.1371/journal.pone.0051264
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