Improved Cartilage Regeneration Utilizing Mesenchymal Stem Cells in TGF- beta 1 Gene-Activated Scaffolds

Recently, bone marrow-derived mesenchymal stem cells (MSCs) have been paid more attention for cartilage regeneration. This study evaluated the potential of using MSCs seeded in plasmid transforming growth factor beta 1 (pTGF- beta 1)-activated three-dimensional chitosan/gelatin scaffolds for improvi...

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Veröffentlicht in:Tissue engineering. Part A 2009-09, Vol.15 (9), p.2687-2698
Hauptverfasser: Diao, H, Wang, J, Shen, C, Xia, S, Guo, T, Dong, L, Zhang, C, Chen, J, Zhao, J, Zhang, J
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Sprache:eng
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Zusammenfassung:Recently, bone marrow-derived mesenchymal stem cells (MSCs) have been paid more attention for cartilage regeneration. This study evaluated the potential of using MSCs seeded in plasmid transforming growth factor beta 1 (pTGF- beta 1)-activated three-dimensional chitosan/gelatin scaffolds for improving cartilage repair in vivo. Significant cell proliferation and transforming growth factor beta 1 protein expression were observed in vitro in pTGF- beta 1-activated scaffolds. Transforming growth factor beta 1-activated scaffolds showed high collagen type II and aggrecan expression and low collagen type I expression during in vitro cultivation. MSC-based pTGF- beta 1-activated scaffolds also exhibited cartilage histology with high secretion of collagen type II in vitro under the stimulation of pTGF- beta 1. In rabbits with full-thickness cartilage defects, the implantation of MSC-based pTGF- beta 1-activated scaffolds not only significantly promoted chondrogenic differentiation of MSCs and hyalin-like cartilage matrix synthesis, but also remarkably improved the overall repair of rabbit cartilage defects and exhibited favorable tissue integrity at 10 weeks postsurgery. These results suggest that MSC-based localized pTGF- beta 1-activated scaffolds have potential applications for in vivo cartilage repair.
ISSN:1937-3341
DOI:10.1089/ten.tea.2008.0621