In vitro generation of an osteochondral construct using injectable hydrogel composites encapsulating rabbit marrow mesenchymal stem cells |
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Authors: | Xuan Guo Hansoo Park Guangpeng Liu Wei Liu Yilin Cao Yasuhiko Tabata F. Kurtis Kasper Antonios G. Mikos |
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Affiliation: | 1. Department of Clinical Pathology, Faculty of Veterinary Medicine, University of Tehran, Tehran, Iran;2. Umbilical Cord Stem Cell Research Center, Tabriz University of Medical Sciences, Tabriz, Iran;3. Biotechnology Research Center, Tabriz Branch Azad University, Tabriz, Iran;4. Tehran Heart Center, Tehran University of Medical Sciences, Tehran, Iran;5. Faculty of Veterinary Medicine, Amol University of Special Modern Technologies, Amol, Iran;6. Graduate Institute of Biomedical Engineering, National Taiwan University of Science and Technology (TAIWAN TECH), Taipei, 10607, Taiwan |
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Abstract: | Injectable, biodegradable hydrogel composites of crosslinked oligo(poly(ethylene glycol) fumarate) (OPF) and gelatin microparticles (MPs) were utilized to fabricate a bilayered osteochondral construct consisting of a chondrogenic layer and an osteogenic layer, and to investigate the differentiation of rabbit marrow mesenchymal stem cells (MSCs) encapsulated in both layers in vitro. The results showed that MSCs in the chondrogenic layer were able to undergo chondrogenic differentiation, especially in the presence of TGF-β1-loaded MPs. In the osteogenic layer, cells maintained their osteoblastic phenotype. Although calcium deposition in the osteogenic layer was limited, cells in the osteogenic layer significantly enhanced chondrogenic differentiation of MSCs in the chondrogenic layer. The greatest effect was observed when MSCs were encapsulated with TGF-β1-loaded MPs and cultured with osteogenic cells in the bilayered constructs. Overall, this study demonstrates the fabrication of bilayered hydrogel composites that mimic the structure and function of osteochondral tissue, along with the application of these composites as cell and growth factor carriers. |
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