期刊文献+

纳米级颅骨替代及诱导材料与颅骨成骨细胞的生物相容性体外实验研究 被引量:1

Biocompatibility of the nanometer-scale substitute for cranial defect and osteoconductive materials with periosteal-derived osteoblasts in the calvaria: an in vitro experimental study
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摘要 目的观察新型纳米级颅骨替代及诱导材料对体外培养的颅骨成骨细胞生长的影响,评价其生物相容性,为新型颅骨修复材料的临床应用提供依据。方法体外培养兔颅骨骨膜成骨细胞,将成骨细胞与纳米级颅骨替代材料及诱导材料一同培养,观察成骨细胞的形态学、生长情况及成骨能力变化。结果体外培养的兔颅骨骨膜源性细胞具有典型的成骨细胞形态,且具有体外成骨能力。与新型颅骨修复材料联合培养后细胞形态正常,生长繁殖良好,能够在材料表面成骨;与共培养前比较,细胞周期及生长曲线无显著性差异。结论纳米级颅骨替代及诱导材料具有良好的生物相容性。 Objective To observe the effect of nanometer-scale substitute for cranial defect and osteoconductive materials on growth of periosteal-derived osteoblasts in the calvaria and evaluate the biocompatibility of the materials. Methods The cranial periosteal-derived osteoblasts were cultured by enzyme methods in vitro, and then the cultured cells were planted onto the nanometer-scale substitute and osteoconductive materials. The biological characteristics and osteogenic ability were observed. Results The cultured cells presented classical characteristics of osteoblasts and osteogenic ability, and the cells planted on the surface of the new-type cranial repairing materials showed the same characteristics. The apoptosis rate and MTT value show no significant difference between pre- and post-cocultures. Conclusion The new nanometer-scale substitute and osteoconductive material has good biocompatibility, and is applied to repair cranial defects.
出处 《中国微侵袭神经外科杂志》 CAS 2005年第9期408-410,共3页 Chinese Journal of Minimally Invasive Neurosurgery
基金 国家自然科学基金资助项目(30170269)
关键词 生物相容性材料 成骨细胞 纳米管 颅骨 biocompatible materials osteoblasts nanotubes, carbon skull
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参考文献6

  • 1Kim BS, Mooney DJ. Development of biocompatible synthetic extracellular matrices for tissue engineering [J].Trends in Biotechnol, 1998; 16(5): 224-230.
  • 2Johnson HJ, Northup SJ, Seagraves PA, et al. Biocompatibility test procedures for materials evaluation in vitro. Ⅱ.Objective methods of toxicity assessment [J]. J Biomed Mater Res, 1985; 19(5): 489-508.
  • 3许永华,王瑞,殷学军,刘德祥,仇东辉,顾为望.兔成骨细胞两种分离方法的比较[J].上海实验动物科学,1999,19(2):109-110. 被引量:6
  • 4Crane GM, Ishaug SL, Mikos AG. Bone tissue engineering [J]. Nat Med, 1995; 1(12): 1322-1324.
  • 5Nunes CR, Simske SJ, Sachdeva R, et al. Long-term ingrowth and apposition of porous hydroxylapatite implants [J]. J Biomed Mater Res, 1997; 36(4): 560-563.
  • 6Du C, Cui FZ, Zhu XD, et al. Three-dimensional nanoHAp/collagen matrix loading with osteogenic cells in organ culture [J]. J Biomed Mater Res, 1999; 44(4): 407- 415.

二级参考文献2

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同被引文献19

  • 1田丰,成国祥,刘长军,陈世谦.骨组织损伤修复生物医用材料的研究进展[J].医疗卫生装备,2005,26(2):22-23. 被引量:14
  • 2李龙,肖增明.可注射型骨修复材料治疗骨折延迟愈合或不愈合[J].中国临床康复,2006,10(21):149-152. 被引量:12
  • 3白冰,叶茂昌.骨组织工程基质材料现状及展望[J].现代生物医学进展,2007,7(1):138-141. 被引量:5
  • 4于皓,林垚,黄文秀.rhBMP-2/hTGF-β_1/胶原复合材料的生物相容性研究[J].福建医药杂志,2007,29(3):102-103. 被引量:3
  • 5Saadeh PB,Khosla RK,Mehrara BJ,et al.Repairofa critical size defect in the rat mandible using allogenic type Ⅰcollagen.J Craniofac Surg.2001; 12(6):573-579.
  • 6Abukawa H,Terai H,Hannouche D,et al.Formation of a mandibular condyle in vitro by tissue engineering.J OralMaxillo-fac Surg.2003; 61(1):94-100.
  • 7Dong J,Uemuma T,SHIRASAKI Y,et al.Promotion of bone formation using highly pure porous β-TCP combined with bone marrow-derived osteoprogenitor cells.Biomaterials.2002; 23(23):4493-4502.
  • 8Yoshikawa T,Ohgushi H,Nakajima H,et al.ln vivo os-teogenic durability of cultured bone in porous ceramics:a novel method for autogenous bone graft substitution.Transplantation.2000;69(1):128-134.
  • 9Xynos ID,Hukkanen MV,Batten JJ,et al.Bioglass 45S5stimulates osteoblast turnover and enhances bone formation in vitro implications and applications for bone tissue engineering.Calcif Tissue Int.2000; 67(4):321-329.
  • 10Du C,Cui FZ,Zhang W,et al.formation of calcium phosphate/collagen composites through mineralization of collagen matrix.J biomedical Materials research.2000; 50:518-527.

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