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首页> 外文期刊>Journal of biomedical materials research, Part A >PEOT/PBT based scaffolds with low mechanical properties improve cartilage repair tissue formation in osteochondral defects.
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PEOT/PBT based scaffolds with low mechanical properties improve cartilage repair tissue formation in osteochondral defects.

机译:具有低机械性能的PEOT / PBT基支架可改善骨软骨缺损中的软骨修复组织形成。

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The aim of our study was to compare the healing response of biomechanically and biochemically different scaffolds in osteochondral defects created in rabbit medial femoral condyles. A block copolymer comprised of poly(ethylene oxide terephthalate) and poly(butylene terephthalate) was used to prepare porous scaffolds. The 70/30 scaffold (70 wt % poly(ethylene oxide terephthalate)) was compared to the stiffer 55/45 (55 wt % poly(ethylene oxide terephthalate)) scaffold. Nine 6-month-old rabbits were used. Osteochondral defects were filled with 55/45 scaffolds (n = 6); 70/30 scaffolds (n = 6); or left empty (n = 6). Defect sites were allowed to heal for 12 weeks. Condyles were macroscopically evaluated and analysed histologically using the O'Driscoll score for evaluating repair of osteochondral defects. Repair tissue in 70/30 scaffolds consisted of cartilage-like tissue on top of trabecular bone, whereas the tissue within the 55/45 scaffolds consisted predominantly of trabecular bone. O'Driscoll scores for70/30 scaffolds were significantly better (p = 0.024) in comparison to untreated osteochondral defects and 55/45 scaffolds. This study reveals that the biomechanical and biochemical properties of the scaffold play an important role by themselves, and can affect the healing response of osteochondral defects. Scaffolds with low mechanical properties were superior in cartilage repair tissue formation.
机译:我们研究的目的是比较生物力学和生物化学不同的支架对兔内侧股骨con产生的骨软骨缺损的愈合反应。使用由聚对苯二甲酸乙二醇酯和聚对苯二甲酸丁二醇酯组成的嵌段共聚物来制备多孔支架。将70/30支架(70wt%的聚对苯二甲酸乙二醇酯)与更硬的55/45(55wt%的聚对苯二甲酸乙二醇酯)支架进行比较。使用9只6个月大的兔子。骨软骨缺损填充了55/45个支架(n = 6); 70/30个脚手架(n = 6);或留空(n = 6)。缺陷部位可以治愈12周。使用O'Driscoll评分对突进行宏观评估和组织学分析,以评估骨软骨缺损的修复情况。 70/30支架中的修复组织由小梁骨顶部的软骨样组织组成,而55/45支架中的组织主要由小梁骨组成。与未经治疗的骨软骨缺损和55/45支架相比,70/30支架的O'Driscoll得分明显更好(p = 0.024)。这项研究表明,支架的生物力学和生化特性本身起着重要作用,并且可以影响骨软骨缺损的愈合反应。具有低机械性能的支架在软骨修复组织形成方面表现优异。

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