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兔骨髓基质细胞与生物活性玻璃支架的相容性 被引量:2

CLINICAL STUDY ON COMPATIBILITY OF RABBIT MARROW STROMA CELLS AND BIOLOGICAL ACTIVITY GLASS FRAME
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摘要 目的:探讨应用兔骨髓基质细胞与生物活性玻璃复合培养构建组织工程化人工骨的可行性。方法:将体外分离培养的兔骨髓基质细胞,经向成骨方向诱导分化后,与生物活性玻璃进行联合立体培养,通过扫描电镜观察骨髓基质细胞在生物活性玻璃上的生长情况。结果:骨髓基质细胞可在体外增殖和向成骨方向分化,并且可在生物活性玻璃上黏附和铺展。结论:骨髓基质细胞与生物活性玻璃复合培养可构建具有活细胞成分的组织工程化人工骨。 Objective:To approach the feasibility of rabbit marrow stroma cells combined with biological activity glass frame to construct tissue-engineering artificial bone. Methods: Rabbit marrow stroma cells, isolatedly cultured in vitro and differentiated inducedly to direction of bone formation, were combined with biological activity glass frame for three-dimensional cultivation. Informations of rabbit marrow stroma cells among biological activity glass frame were observed by scanning electron microscope. Results: It showed that marrow stroma cells could not only generate in vitro and differentiate to direction of bone formation, but also paste and extend on biological activity glass frame. Conclusion: It indicated that compound culture of marrow stroma cells and biological activity glass frame could construct dssue-engineering artificial bone with living cell constituents .
出处 《中医正骨》 2008年第1期9-10,共2页 The Journal of Traditional Chinese Orthopedics and Traumatology
基金 山东省科技厅资助项目(2002年度山东省中医药科技发展计划第13号)
关键词 骨髓基质细胞 生物活性玻璃 复合培养 组织工程化人工骨 实验研究 动物 Marrow stroma cell, biological activity glass, compound cultivate, tissue-engineering artificial bone, empirical study, animal, rabbit
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  • 1汪群力,裴国献,曾宪利,金丹,魏宽海,任高宏.成年恒河猴骨髓基质干细胞的体外培养[J].中华创伤骨科杂志,2004,6(7):728-730. 被引量:11
  • 2鞠洪斌,吴彩玲,邓展生,李凌贺,贺达仁.组织工程学中种子细胞的伦理学问题[J].中国医学工程,2004,12(3):108-110. 被引量:2
  • 3[22]Collin-Osdoby P. Role of vascular endothelial cells in bone biology. J Cell Biochem, 1994;55∶304
  • 4[23]Ohgushi H, Caplan AI Stem cell technology and bioceramics: from cell to gene engineering. J Biomed Mater Res, 1999;48∶913
  • 5[24]Bruder SP, Kraus KH, Goldberg VM, et al. The effect of implants loaded with autologous mesenchymal stem cells on the healing of canine segmental bone defects. J Bone Jt Surg Am, 1998;80-A∶985
  • 6[25]Kraus K, Kadiyala S, Wotton H M, et al.Critically sized osteo-perosteal fermoral defects: A dog model. J Invest Surg, 1999;12∶115
  • 7[26]Bruder SP, Kurth AA, Shea M, et al.Bone regeneration by implantation of purified, cultured-expanded human mesenchymal stem cells. J Orthop Res, 1998;16∶155
  • 8[27]Johnstone B, Yoo JU. Autologous mesenchymal progenitor cells in articular cartilage repair. Clin Orthop, 1999;367(Suppl)∶S156
  • 9[28]Grande DA, Breitbart AS, Mason J, et al.Cartilage tissue engineering: Current limitations and solutions. Clin Orthop, 1999;367(Suppl)∶S176
  • 10[29]Angele P, Kujat R, Nerlich M, et al.Engineering of osteochondral tissue with bone marrow mesenchymal progenitor cells in a derivatized hyaluronan-gelatin composite sponge. Tissue Eng, 1999;5(6)∶545

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  • 1李章华,刘世清,廖文,张玉富,赵强,王常勇.组织工程化骨构建及其修复羊跖骨标准性骨缺损的放射学评估[J].中国矫形外科杂志,2005,13(2):134-136. 被引量:2
  • 2徐展望,张建新,许波,张鹏,谭国庆.兔骨髓基质细胞体外培养的操作技术特征[J].中国临床康复,2005,9(22):37-39. 被引量:3
  • 3魏利成,刘丹平.BMP2基因转染在骨组织工程中应用的研究进展[J].实用手外科杂志,2005,19(4):222-223. 被引量:2
  • 4Cancedda R, Mastrogiacomo M, Bianch IG, et al. Bone marrow stromal cells and their use in regenerating bone [ J ]. Novartis Found Symp, 2003,249 : 133 - 143.
  • 5Mauney JR,Jaquiery C,Volloch V,et al. In vitro and in vivo evaluation of differentially demineralized cancellous bone scaffolds combined with human bone marrow stromal cells for tissue engineering [J]_ Biomaterials,2005,16:3173 -3185.
  • 6Al-Salihi KA. Tissue-engineered bone via seeding bone marrow stem cell derived osteoblasts into corm :a rat model[ J]. Med J Malaysia, 2004,59:200 - 201.
  • 7Kim BS, Mooney DJ. Development of biocompatible synthetic extra cellular matrices for tissue engineering[ J]. Trends Biotechnol, 1998, 5:224.
  • 8Damien C J, Parson JR. Bone graft and bone graft substitutes : a review of current technology and application [ J]. Jappl Biomater, 1991,2: 187.
  • 9Inga D, Elias V, Rodolfo C, et al. Tissue engineering for bone defect healing:an update on a multi-component approach [ J ]. J Care Injured,2008,2:9 - 20.
  • 10Sun JS,Dong GC,Lin CY,et al. The effect of Gu-Sui-Bu (Drynaria fortunei J. Sm) immobilized modified calcium hydrogenphosphate on bone cell activities. Biomaterials, 2003 ; 24 (5) : 873-882.

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