首页> 外文期刊>International Journal of Biomaterials >Comparative Effectiveness of Bone Grafting Using Xenograft Freeze-Dried Cortical Bovine, Allograft Freeze-Dried Cortical New Zealand White Rabbit, Xenograft Hydroxyapatite Bovine, and Xenograft Demineralized Bone Matrix Bovine in Bone Defect of Femoral Diaphysis of White Rabbit: Experimental Study In Vivo
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Comparative Effectiveness of Bone Grafting Using Xenograft Freeze-Dried Cortical Bovine, Allograft Freeze-Dried Cortical New Zealand White Rabbit, Xenograft Hydroxyapatite Bovine, and Xenograft Demineralized Bone Matrix Bovine in Bone Defect of Femoral Diaphysis of White Rabbit: Experimental Study In Vivo

机译:骨移植的比较效果使用异种移植冻干皮质牛,同种异体移植冻干皮质新西兰白兔,异种移植羟基磷灰石牛,异种移植脱矿质骨基质牛骨缺陷白兔骨缺损:实验研究体内实验研究

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摘要

Autogenous bone graft is gold standard in treating bone defects, but it might have difficulty in corporation and rejection reaction. This study is to compare the effectiveness among freeze-dried xenograft, freeze-dried allograft, hydroxyapatite xenograft, and demineralized bone matrix xenograft as bone graft to fill bone defect in femoral diaphysis of white rabbit. Thirty male New Zealand white rabbits were distributed into five groups. Bone defect was filled correspondingly with xenograft freeze-dried cortical bovine, allograft freeze-dried cortical New Zealand white rabbit, xenograft hydroxyapatite bovine, and xenograft demineralized bone matrix bovine. No graft was used in control group. VEGF, osteoblast, and woven bone were higher in allograft freeze-dried cortical New Zealand white rabbit (mean 5.6625 (p<0.05)) and xenograft demineralized bone matrix bovine (mean 5.2475 (p<0.05)) with calcification of woven bone was already seen in week 2 in the latter group. There was a decrease of woven bone (mean 4.685 (p<0.05)) fibrous tissue (mean 41.07 (p<0.05)) in xenograft demineralized bone matrix bovine. The Immunoglobulin-G was elevated in control and all study groups but not significantly (p=0.07855). Bone healing process in xenograft demineralized bone matrix bovine is more effective than in xenograft hydroxyapatite bovine, allograft freeze-dried New Zealand white rabbit, xenograft freeze-dried cortical bovine, and control.
机译:自生骨移植物是治疗骨缺损的金标准,但它可能难以在公司和排斥反应中进行困难。该研究是将冻干异种移植物,冷冻干燥的同种异体移植物,羟基磷灰石异种移植物和脱矿质骨基质异种移植物的有效性进行比较,以骨移植物,以填充白兔股骨骨干中的骨缺损。三十只男性新西兰白兔分为五个群体。骨缺损相应地填充异叶移植冷冻干燥的皮质牛,同种异体移植冷冻干燥的皮质新西兰白兔,异种移植羟基磷灰石牛和异种移植物脱蛋白骨基质牛。对照组没有移植物。在同种异体移植冷冻干燥的皮质新西兰白兔(平均5.6625(P <0.05))和异种移植骨质基质牛(平均5.2475(p <0.05))已经进行了钙骨的钙化(平均5.2475)在后一组的第2周见。编织骨(平均4.685(P <0.05))纤维组织(平均41.07(P <0.05))含有纤维组织的纤维组织(平均41.07))。免疫球蛋白-G在对照和所有研究组中升高,但不显着(p = 0.07855)。异种移植物脱耳化骨基质牛的骨愈合过程比在异种移植羟基磷灰石牛,同种异体移植冻干新西兰白兔,异种移植物冷冻干燥皮质牛,对照。

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