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微孔对磷酸钙骨移植替代生物材料成骨诱导的影响。

The effects of microporosity on osteoinduction of calcium phosphate bone graft substitute biomaterials.

机构信息

John Scales Centre for Biomedical Engineering, Institute of Orthopaedics and Musculoskeletal Science, Division of Surgery and Interventional Science, University College London, The Royal National Orthopaedic Hospital, Stanmore, Middlesex, UK.

出版信息

Acta Biomater. 2012 Jul;8(7):2788-94. doi: 10.1016/j.actbio.2012.03.038. Epub 2012 Apr 1.

Abstract

The effect of increasing strut porosity on the osteoinductive ability of silicate substituted calcium phosphate (SiCaP) biomaterials was investigated in an ectopic ovine model. Implants with strut porosities of 22.5%, 32.0% and 46.0% were inserted into the parapsinalis muscle. At 8, 12 and 24 weeks histological sections were prepared. Sections were examined using backscattered scanning electron microscopy and un-decalcified histology. Bone area, implant area and bone-implant contact were quantified. At 8 weeks there was no significant difference between the groups in terms of bone area and implant area. However at 12 weeks, the amount of bone formation observed was significantly greater in SiCaP-46 (6.17 ± 1.51%) when compared with SiCaP-22.5 (1.33 ± 0.84%) p=0.035. Results also showed significantly increased amounts of bone-implant contact to the SiCaP-46 scaffold (3.30 ± 1.17%) compared with SiCaP-22.5 (0.67 ± 0.52%, p=0.043) at 8 weeks and 12 weeks; (SiCaP-46 (21.82 ± 5.59%) vs SiCaP-22.5 (3.06 ± 1.89%), p=0.012). At 24 weeks, bone formation and graft resorption had significantly increased in all groups so that the level of bone formation in the SiCaP-46 group had increased 75-fold to 30.05 ± 8.38%. Bone formation was observed in pores <10 μm. Results suggest that bone graft substitute materials with greater strut porosity are more osteoinductive.

摘要

研究了增加支柱孔隙率对硅酸钙磷(SiCaP)生物材料成骨能力的影响,在异位绵羊模型中进行了研究。将孔隙率为 22.5%、32.0%和 46.0%的植入物插入脊柱旁肌中。在 8、12 和 24 周时制备组织学切片。使用背散射扫描电子显微镜和非脱钙组织学检查切片。定量测量骨面积、植入物面积和骨-植入物接触。在 8 周时,各组之间的骨面积和植入物面积没有显著差异。但是在 12 周时,与 SiCaP-22.5(1.33±0.84%)相比,SiCaP-46 观察到的骨形成量明显更大(6.17±1.51%,p=0.035)。结果还表明,与 SiCaP-22.5(0.67±0.52%,p=0.043)相比,SiCaP-46 支架的骨-植入物接触量明显增加(8 周和 12 周分别为 3.30±1.17%和 21.82±5.59%)SiCaP-22.5(3.06±1.89%,p=0.012)。在 24 周时,所有组的骨形成和移植物吸收均显著增加,使得 SiCaP-46 组的骨形成水平增加了 75 倍,达到 30.05±8.38%。在<10μm的孔中观察到骨形成。结果表明,具有较大支柱孔隙率的骨移植物替代材料具有更强的成骨能力。

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