4.3 Article

REPAIR OF BONE DEFECT WITH VASCULARIZED TISSUE ENGINEERED BONE GRAFT SEEDED WITH MESENCHYMAL STEM CELLS IN RABBITS

Journal

MICROSURGERY
Volume 31, Issue 2, Pages 130-137

Publisher

WILEY-BLACKWELL
DOI: 10.1002/micr.20854

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Funding

  1. National Basic Research Program of China (973 program) [2009CB930002]
  2. Program of Shanghai Subject Chief Scientist [07XD14006]
  3. National Natural Science Foundation of China [30970718]
  4. National High tech Research and Development Program (863 program) [2007AA03Z313]

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This study evaluated the results of repair of the radius defect with a vascularized tissue engineered bone graft composed by implanting mesenchymal stem cells (MSCs) and a vascular bundle into the xenogeneic deproteinized cancellous bone (XDCB) scaffold in a rabbit model. Sixty-four rabbits were used in the study. Among them, four rabbits were used as the MSCs donor. Other 57 rabbits were divided into five groups. In group one (n = 9), a 1.5 cm bone defect was created with no repair. In group two (n = 12), the bone defect was repaired by a XDCB graft alone. In group three (n = 12), the defect was repaired by a XDCB graft that included a vascular bundle. In group four (n = 12), the defect was repaired by a XDCB graft seeded with MSCs. In group five (n = 12), the defect was repaired by a XDCB graft including a vascular bundle and MSCs implantation. The rest three rabbits were used as the normal control for the biomechanical test. The results of X-ray and histology at postoperative intervals (4, 8, and 12 weeks) and biomechanical examinations at 12 weeks showed that combining MSCs and a vascular bundle implantation resulted in promoting vascularization and osteogenesis in the XDCB graft, and improving new bone formation and mechanical property in repair of radius defect with this tissue engineered bone graft. These findings suggested that the vascularized tissue engineered bone graft may be a valuable alternative for repair of large bone defect and deserves further investigations. (C) 2011 Wiley-Liss, Inc. Microsurgery 31:130-137, 2011.

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