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异种骨衍生材料修复节段性骨缺损的实验研究 被引量:2

Experimental Study of Repairing the Segmental Bone Defect with Xenogeneic Bone Derived Materials
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摘要 目的 :评价三种异种骨衍生材料修复节段性骨缺损的成骨作用 .方法 :分别用复合型完全脱蛋白骨 (CFDB)、部分脱蛋白骨 (PDPB)、部分脱钙骨 (PDCB)修复兔桡骨节段性缺损 ,以自体髂骨和空白缺损作为对照 ,术后 4 ,8,12 ,2 4周取材 ,通过X线摄片和不脱钙硬组织切片检测 ,评价三种材料的成骨作用 .结果 :X线摄片可见 4周时材料密度较高 ;8周时材料与宿主骨交界处模糊 ;12周时材料边缘部分区域密度接近宿主骨 ;2 4周时PDPB组髓腔再通 ,PDCB组缺损区域密度大部分接近宿主骨 ,有一些高密度影 ,CFDB组缺损区域有更多高密度影 .X线片评分表明 4周和 8周时各材料组无显著差异 ;12周时PDPB组和PDCB组评分高于CFDB组 ;2 4周时评分为PDPB组 >PDCB组 >CFDB组 .经组织形态观察可见 4周和 8周新骨贴附材料生长 ,以后新骨增多 ,材料随时间推移逐渐降解吸收 ,2 4周时成骨量PDPB组 >PDCB组 >CFDB组 .结论 :PDPB修复节段性骨缺损的效果好 ,PDCB的修复效果较好 。 Objective: To evaluate the osteogenesis of xenogeneic bone derived materials in repairing segmental bone defects. Methods: composite fully deproteinised bone (CFDB), partially deproteinised bone (PDPB), partially decalcified bone (PDCB) were implanted into the radio segmental bone defects of rabbits, autogenous iliac bone graft and empty defect were used as control. The specimens were examined after 4, 8,12,24 weeks, the osteogenesis was evaluated through X-ray radiograph and undecalcified solid tissue histology examination. Results: The border between the material and host's bone was blurred after 8 weeks, the density of some part of the edge of the material is similar to radii after 12 weeks, medullary cavity of bone was formed in PDPB group, the density of most part of the defect area of the PDCB group was similar to the host bone, there was a little high density shadow, the density of most part of the defect area of the CFDB group is higher than that of host bone after 24 weeks by radiograph. There was no significant difference among 3 material groups after 4 weeks and 8 weeks; PDPB group and PDCB group were higher than CFDB group after 12 weeks; PDPB group>PDCB group>CFDB group after 24 weeks through radiograph scoring. Bone callus grew toward defect area and new bone formed adhesive to the material after 4 weeks and 8 weeks, more new bones formed with the time, and the material was absorbed and degraded followed with time, the quantity of bone formation was PDPB group>PDCB group >CFDB group through histologic observation. Conclusion: PDPB had good osteogenisis in repairing the segmental bone defect, the ability of PDCB was inferior to it, both of them were fit to repair segmental bone defect, the osteogenesis of CFDB was not ideal.
出处 《昆明医学院学报》 2004年第1期14-18,共5页 Journal of Kunming Medical College
基金 云南省自然科学基金资助项目 (2 0 0 0C0 0 10R)
关键词 异种骨衍生材料 修复 节段性骨缺损 实验研究 成骨作用 Xenogeneic bone derived material Bone defect Osteogenesis
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  • 1丁真奇,谭富生,吴祖尧,曹本珍,蒋电明.四种移植材料修复兔颅骨缺损的比较研究[J].中华创伤杂志,1994,10(6):261-263. 被引量:61
  • 2姚振强,曾才铭,唐景清,王宏帮,黄向红,杨庆周,后嘉磷.骨膜成骨细胞的分离培养及其成骨作用的放射自显影研究[J].中国修复重建外科杂志,1994,8(3):168-171. 被引量:16
  • 3傅荣,杨志明.骨膜成骨细胞培养与生物活性陶瓷复合的实验研究[J].中国修复重建外科杂志,1996,10(4):197-201. 被引量:23
  • 4[1]Ozaki T, Inoue H, Sugihara S, et al. Radiological long-term follow up of grafted xenogeneic bone in patients with bone tumors. Acta Med Okayama, 1992; 46(2)∶ 87
  • 5[2]Valentini P, Abensur D. Maxillary sinus floor elevation for implant placement with demineralized freeze-dried bone and bovine bone (Bio-Oss): A clinical study of 20 patients. Int J Periodontics Restorative Dent, 1997; 17(3)∶232
  • 6[3]Valentini P, Abensur D, Densari D, et al. Histological evaluation of Bio-Oss in a 2-stage sinus floor elevation and implantation procedure: a human case report. Clin Oral Implants Res, 1998; 9(1)∶59
  • 7[4]Begley CT, Doherty MJ, Mollan RA, et al. Comparative study of the osteoinductive properties of bioceramic coral and processed bone graft substitutes. Biomaterials, 1995; 16(15)∶1181
  • 8[5]Ishaug SL, Yaszemski MJ, Bizios R, et al. Osteoblast function on synthetic biodegradable polymer. J Biomed Mater Res, 1994; 28(12): 1445
  • 9[6]Hasegawa Y, Ohgushi H, Ishimura M, et al. Marrow cell culture on poly-L-lactic acid fabrics. Clin Orthop, 1999; 358(1): 235
  • 10姚振强,中国修复重建外科杂志,1994年,8卷,168页

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同被引文献37

  • 1孙源,林红,吴子征,陈瑜,董健.联合培养时诱导的内皮细胞对自体骨髓基质干细胞成骨作用的影响[J].中华创伤骨科杂志,2006,8(10):919-923. 被引量:6
  • 2冯立,曹晓建,任永信.纤维粘连蛋白与碱性成纤维细胞生长因子对成骨细胞黏附的协同刺激作用[J].中国修复重建外科杂志,2007,21(4):390-395. 被引量:7
  • 3Minamide,Akihito MD,et al.Evaluation of Carriers of Bone Morphogenetic Protein for Spinal Fusion [ J ].Spine.2001,26 ( 8 ): 933~939.
  • 4Terheyden,Hendrik,et al.Sinus floor augmentation with simultaneous placement of dental implants using a combination of deproteinized bone xenografts and recombinant human osteogenic protein-1: A histometric study in miniature pigs [ J ].Clinical Oral Implants Research.1999,10(6) :510 ~521.
  • 5Minamide,Akihito MD,et al.Experimental spinal fusion using sintered bovine bone coated with type Ⅰ collagen and recombinat human bone morphogenetic protein-2 [ J ].Spine.1999,24 ( 18 ): 1863.
  • 6Cho,Gyunggoo,et al.Detection of Hydroxyl Ions in Bone Mineral by Solid-State NMR Spectroscopy[J].Science,2003,300(5622):1123 ~ 1127.
  • 7Donos,Nilkolaosd,et al.Effect of GBR in combination with deproteinized bovine bone mineral and/or enamel matrix proteins on the healing of critical-size defects[ J].Clinical Oral Implants Research,2004,15(1) :101 ~ 111.
  • 8Xu,Hui,Shimizu,et al.Grafting of deproteinized bone particles inhibits bone resorption after maxillary sinus floor elevation [ J ].Clinical Oral Implants Research.2004,15( 1 ) :126 ~ 133.
  • 9Shimizu ,et al.Experimental sinus grafting with the use of deproteinized bone particles of different sizes [ J ].Clinical Oral Implants Research.2003,14( 5 ) :548 ~ 555.
  • 10Stavropoulos,et al.Deproteinized bovine bone ( Bio-Oss(R) ) and bioactive glass (Biogran(R) ) arrest bone formation when used as an adjunct to guided tissue regeneration (GTR): An experimental study in the rat[ J].Journal of Clinical Periodontology.2003,30(7 ) :636~643.

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