Enhanced repair of a critical-sized segmental bone defect in rabbit femur by surface microstructured porous titanium

被引:0
作者
J. Yang
H. J. Chen
X. D. Zhu
S. Vaidya
Z. Xiang
Y. J. Fan
X. D. Zhang
机构
[1] Sichuan University,National Engineering Research Center for Biomaterials
[2] Sichuan University,West China School of Medicine
[3] No. 2 Hospital of Xiamen,Department of Pain Management
来源
Journal of Materials Science: Materials in Medicine | 2014年 / 25卷
关键词
Bone Defect; Porous Titanium; Large Bone Defect; Segmental Bone Defect; Porous Biphasic Calcium Phosphate;
D O I
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中图分类号
学科分类号
摘要
Repair of load-bearing bone defects remains a challenge in the field of orthopaedic surgery. In the current study, a surface microstructured porous titanium (STPT) successively treated with H2O2/TaCl5 solution and simulated body fluid was used to repair the critical-sized segmental bone defects in rabbit femur, and non-treated porous titanium (NTPT) and porous biphasic calcium phosphate ceramics (PBCP) were used as control, respectively. A 15 mm long implant was positioned in the femoral defect and stabilized by a plate and screws fixation. After implantation into the body for 1, 3 and 6 months, X-ray observation confirmed that porous titanium groups (NTPT and STPT) provided better mechanical support than PBCP group at the early stage. However, there was no obvious difference in the formed bony callus between PBCP and STPT groups in the later stage, and they both showed better shape of bony callus than NTPT group. Micro-CT and histomorphometric analysis for the samples of 6-month implantation demonstrated that more new bone formed in the inner pores of PBCP and STPT groups than that in NTPT group. Moreover, the biomechanical tests revealed that STPT group could bear larger compressive load than NTPT and PBCP groups, almost reaching the level of the normal rabbit femur. STPT exhibited the enhanced repairing effect on the critical-sized segmental bone defect in rabbit femur, meaning that it could be an ideal material for the repair of large bone defect in load-bearing site.
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页码:1747 / 1756
页数:9
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共 208 条
  • [1] Reichert JC(2009)The challenge of establishing preclinical models for segmental bone defect research Biomaterials 30 2149-2163
  • [2] Saifzadeh S(2005)Bone substitutes: an update Injury 36 S20-S27
  • [3] Wullschleger ME(2011)The use of bone-graft substitutes in large bone defects: any specific needs? Injury 42 S56-S63
  • [4] Epari DR(1991)Bioceramics: from Concept to Clinic J Am Ceram Soc 74 1487-1510
  • [5] Schütz MA(1990)Macroporous calcium phosphate ceramic for long bone surgery in humans and dogs. Clinical and histological study J Biomed Mater Res 24 379-396
  • [6] Duda GN(1993)Clinical applications of calcium phosphate biomaterials: a review Ceram Int 19 363-366
  • [7] Giannoudis PV(1996)Osteoinduction in porous hydroxyapatite implanted in heterotopic sites of different animal models Biomaterials 17 31-35
  • [8] Dinopoulos H(1996)Osteogenesis in extraskeletally implanted porous calcium phosphate ceramics: variability among different kinds of animals Biomaterials 17 2131-2137
  • [9] Tsiridis E(1998)Osteoinduction by calcium phosphate biomaterials J Mater Sci Mater Med 9 723-726
  • [10] Calori GM(2010)Osteoinductive ceramics as a synthetic alternative to autologous bone grafting Proc Natl Acad Sci 107 13614-13619