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不同应力环境对兔骨髓间充质干细胞修复关节软骨缺损的影响
引用本文:王刚,刘一,单玉兴,徐莘香.不同应力环境对兔骨髓间充质干细胞修复关节软骨缺损的影响[J].中国修复重建外科杂志,2004,18(2):96-99.
作者姓名:王刚  刘一  单玉兴  徐莘香
作者单位:吉林大学第一医院骨科,长春,130021
摘    要:目的探讨不同应力环境对骨髓间充质干细胞(MSCs)修复关节软骨缺损的影响. 方法将日本大耳白兔15只制成髌骨外侧脱位动物模型,平均分成3组,每组5只:即单纯载体脱位组(对照组)、移植物正常应力组及移植物脱位组.对兔MSCs进行分离、培养,以兔MSCs为种子细胞构建自体组织工程移植物修复关节软骨缺损.6周后处死动物,观察修复组织的成分和结构. 结果术后6周,移植物正常应力组修复组织浅层为软骨组织,甲苯胺蓝染色接近正常关节软骨;深层为软骨下骨,与正常关节软骨结构相似.移植物脱位组为骨组织所修复,缺损周围的正常关节软骨变薄,软骨下血管侵入正常关节软骨内,遗留在股骨髁滑车槽内的移植物在滑车槽正常关节软骨表面形成新生类透明软骨组织.单纯载体脱位组为纤维组织修复. 结论 MSCs修复关节软骨缺损,只有在正常应力状态下修复效果最佳;提示维持负重关节正常的应力刺激,对组织工程软骨修复组织的形成和维持必不可少.

关 键 词:组织工程软骨  缺损  骨髓间充质干细胞  应力环境
修稿时间:2002年10月14

INFLUENCE OF DIFFERENT MECHANICAL ENVIRONMENTS ON REPAIR OF CARTILAGE DEFECT WITH RABBIT MARROW MESENCHYMAL STEM CELLS
WANG Gang,LIU Yi,SHAN Yu-xing,et al..INFLUENCE OF DIFFERENT MECHANICAL ENVIRONMENTS ON REPAIR OF CARTILAGE DEFECT WITH RABBIT MARROW MESENCHYMAL STEM CELLS[J].Chinese Journal of Reparative and Reconstructive Surgery,2004,18(2):96-99.
Authors:WANG Gang  LIU Yi  SHAN Yu-xing  
Institution:Department of Orthopedic Surgery, First Teaching Hospital of Jilin University, Changchun, Jilin, P. R. China 130021.
Abstract:Objective To study the influence of different mechanical environments on repair cartilage defect with marrow mesenchymal stem cells as seed cells. Methods The rabbit marrow mesenchymal stem cells were isolated and cultured. The cartilage defects were repaired by autologous tissue engineered cartilage with the marrow mesenchymal stem cells as seed cells. Fifteen rabbits with cartilage defect were divided into 3 groups: dislocation group with cell-free scaffold(control group), dislocation group with cartilaginous construct and normal mechanical environment group with cartilaginous construct. The repaired tissue was harvested and examined 6 weeks postoperatively. Results The repair tissue in normal mechanical environment group with cartilaginous construct showed cartilage-like tissue in superficial layer and subchondral bone tissue in deep layer 6 weeks postoperatively. The defect was filled with bone tissue in dislocation group with cartilaginous construct 6 weeks postoperatively. The surrounding normal cartilage tissue showed vascular invasion from subchondral area and the concomitant thinning of the normal cartilage layer. The cartilaginous construct left in the femoral trochlea groove formed hyaline cartilage-like tissue. The defect was repaired by fibrous tissue in control group. Conclusion The repaired tissue by tissue engineered cartilage with marrow mesenchymal stem cells as seed cells showed the best result in normal mechanical environment group, which indicates that it will be essential for the formation and maintenance of tissue engineered cartilage to keep the normal mechanical stress stimulus.
Keywords:Tissue engineered cartilage    Defect    Marrow mesenchymal stem cells      Mechanical environment
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