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应用生物反应器体外培养骨软骨复合体修复犬关节软骨损伤被引量:1
2010年
目的探讨应用灌注型生物反应器体外培养骨软骨复合体修复关节软骨损伤的可行性。方法体外分离犬骨髓间充质干细胞(MSCs),流式细胞仪鉴定。经过生长因子诱导生成软骨细胞和成骨细胞后,免疫组化及碱性磷酸酶等染色鉴定。将软骨细胞、成骨细胞接种到三维多孔β-磷酸三钙(β—TCP)陶瓷支架材料上,置于灌注型生物反应器中复合培养21d,构建骨软骨复合体,扫描电镜观察细胞在支架材料上的黏附、伸展和增殖情况,并模仿马赛克骨软骨移植术用塑形良好的骨软骨复合体修复犬软骨缺损,切片染色观察其修复情况。结果扫描电镜显示软骨细胞、成骨细胞红β—TCP支架上的黏附、伸展和增殖良好,实验组缺损区软骨厚度与正常软骨组织接近。实验组与阴性对照组比较,差异有统计学竟义(q=12.3370,P〈0.01);与空白对照组比较,差异有统计学意义(q=31.5393,P〈0.01):结论灌注型生物反应器使软骨和成骨细胞在三维载体内存活并增殖,提高细胞在载体内的复合效率。
任强孙水张磊王栋吴帅孙西涛
关键词:磷酸钙类生物反应器骨软骨缺损
Repairing cartilage defects using chondrocyte and osteoblast composites developed using a bioreactor被引量:4
2011年
Background Articular cartilage injury is a common disease, and the incidence of articular wear, degeneration, trauma and sports injury is increasing, which often lead to disability and reduced quality of life. Unfortunately repair of articular cartilage defects do not always provide satisfactory outcomes. Methods Chondrocyte and osteoblast composites were co-cultured using a bioreactor. The cartilage defects were treated with cell-β-tricalcium phosphate (β-TCP) composites implanted into osteochondral defects in dogs, in vivo, using mosaicplasty, by placing chondrocyte-β-TCP scaffold composites on top of the defect and osteoblast-β-TCP scaffold composites below the defect.Results Electron microscopy revealed that the induced chondrocytes and osteoblast showed fine adhesive progression and proliferation in the β-TCP scaffold. The repaired tissues in the experimental group maintained their thickness to the full depth of the original defects, as compared with the negative control group (q=12.3370, P 〈0.01; q=31.5393, P 〈0.01). Conclusions Perfusion culture provided sustained nutrient supply and gas exchange into the center of the large scaffold. This perfusion bioreactor enables the chondrocytes and osteoblasts to survive and proliferate in a three-dimensional scaffold.
SUN ShuiREN QiangWANG DongZHANG LeiWU ShuaiSUN Xi-tao
关键词:BIOREACTOR
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