首页> 外文期刊>Journal of orthopaedic research >A biodegradable scaffold for the treatment of a diaphyseal bone defect of the tibia.
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A biodegradable scaffold for the treatment of a diaphyseal bone defect of the tibia.

机译:一种可生物降解的支架,用于治疗胫骨的干phy端骨缺损。

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The aim of this study was to compare angiogenesis and osteogenesis occurring within 8.0 mm diaphyseal defects created in canine tibiae treated using autograft or a biodegradable bone scaffold. All tibiae were reamed to 7.0 mm and fixed with a 6.5-mm statically locked intramedullary nail. Each of the 18 canines as allotted to one of three treatment groups: (1) left empty (N = 5), (2) treated with iliac crest autograft (N = 6), or (3) treated with a PLGA/calcium phosphate biodegradable scaffold (N = 7). Fluorescent markers were given at successive time periods: calcein green at 6 weeks, xylenol orange at 9 weeks, and tetracycline at 11 and 14 weeks. Animals were sacrificed at 15 weeks and their legs were perfused with a radio opaque compound. Samples were analyzed using Micro CT, bright-field microscopy and fluorescent microscopy. Scaffold samples were found to have significantly greater bone formation (p = 0.015) and blood vessel formation (p < 0.001) at their osteotomy sites than autograft samples. Bone formation rate in the periosteum was significantly greater in the autograft samples than the scaffold samples for all time periods. Bone formation at the osteotomy site was found to be significantly greater when associated with greater blood vessel formation (p = 0.026). The PLGA/calcium phosphate biodegradable scaffold we have employed supports angiogenesis within a segmental tibial defect that has adequate soft tissue coverage.
机译:这项研究的目的是比较在使用自体移植物或可生物降解的骨支架治疗的犬胫骨中产生的8.0 mm骨干缺损中发生的血管生成和成骨。将所有胫骨扩孔至7.0 mm,并用6.5 mm静态锁定的髓内钉固定。分配给三个治疗组之一的18个犬中的每一个:(1)空置(N = 5),(2)用自体移植治疗(N = 6)或(3)用PLGA /磷酸钙治疗可生物降解的支架(N = 7)。在连续的时间段给予荧光标记:钙黄绿为6周,二甲苯酚橙为9周,四环素为11和14周。在第15周处死动物,并用不透射线的化合物灌注其腿。使用Micro CT,明场显微镜和荧光显微镜分析样品。发现支架样品在截骨部位比自体移植样品具有明显更大的骨形成(p = 0.015)和血管形成(p <0.001)。在所有时间段内,自体移植样品中骨膜的骨形成率均显着高于支架样品。当与更大的血管形成相关联时,发现截骨部位的骨形成明显更大(p = 0.026)。我们采用的PLGA /磷酸钙可生物降解支架支持具有足够软组织覆盖的节段性胫骨缺损内的血管生成。

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