Synergetic effects of hBMSCs and hPCs in osteogenic differentiation and their capacity in the repair of critical-sized femoral condyle defects

被引:15
作者
Chen, Daoyun [1 ]
Shen, Hao [1 ]
He, Yaohua [1 ]
Chen, Yunsu [1 ]
Wang, Qi [1 ]
Lu, Jianxi [2 ]
Jiang, Yao [1 ]
机构
[1] Shanghai Jiao Tong Univ, Dept Orthopaed Surg, Shanghai Peoples Hosp 6, Shanghai 200233, Peoples R China
[2] Shanghai Jiao Tong Univ, Dept Orthoped Surg, Shanghai Peoples Hosp 6, Shanghai 200011, Peoples R China
关键词
co-culture; human bone marrow mesenchymal stem cells; human periosteal-derived stem cells; critical-sized femoral condyle defects; bone tissue engineering; osteogenesis; neovascularization; MARROW STROMAL CELLS; MESENCHYMAL PROGENITOR CELLS; BETA-TRICALCIUM PHOSPHATE; PERIOSTEAL-DERIVED CELLS; BONE-MARROW; ALKALINE-PHOSPHATASE; STEM-CELLS; TISSUE; REGENERATION; EXPRESSION;
D O I
10.3892/mmr.2014.2883
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Tissue-engineered bone grafts require an osteoblastic cellular source to be utilized in bone transplantation therapy. Human bone marrow stem cells (hBMSCs) and periosteal-derived stem cells (hPCs) are the commonly used cellular sources for bone tissue engineering and are essential in fracture healing. In the present study, hBMSCs and hPCs were co-cultured from the same donors, as the cellular source. In monolayer cultivation, co-culturing hBMSCs and hPCs demonstrated more robust mineralized nodule formation and stronger alkaline phosphatase (ALP) positive staining than hBMSCs or hPCs. Three-dimensional (3-D) culturing on porous p-tricalcium phosphate (TCP) scaffolds and co-culturing of hBMSCs and hPCs significantly promoted the osteogenic specific mRNA expression of COL1 alpha 1, BMP-2, osteopontin (OPN) and osteocalcin (OC). For in vivo bone formation and neovascularization assessment, the cellular-beta-TCP scaffolds were transplanted into critical-sized femoral condyle defects in rabbits. The results confirmed that co-culturing hBMSCs and hPCs accelerated bone regeneration and enhanced mature bone formation, but also facilitated central vascularization in scaffold pores. Based on these data, we recommend co-culturing hBMSCs and hPCs as a promising cellular source for bone tissue engineering applications.
引用
收藏
页码:1111 / 1119
页数:9
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