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首页> 外文期刊>Biomaterials >A comparison between bone reconstruction following the use of mesenchymal stem cells and total bone marrow in association with calcium phosphate scaffold in irradiated bone.
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A comparison between bone reconstruction following the use of mesenchymal stem cells and total bone marrow in association with calcium phosphate scaffold in irradiated bone.

机译:使用间充质干细胞后的骨重建与经辐照的骨中磷酸钙支架联合全骨髓的比较。

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The purpose of this study was to compare bone reconstruction using either mesenchymal stem cells (MSCs) or total bone marrow (TBM) in association with biphasic calcium phosphate (BCP) granules after irradiation in a rat model. Three weeks after an external irradiation of the hind limbs of rats, four bone defects were created per animal. The defects were filled with either BCP alone, or with a mixture of BCP and TBM, or with a mixture of BCP and MSCs (adipose-derived or bone marrow-derived MSCs). Three weeks after implantations, new-bone formation was assessed. Histological examination showed osteoconductive and osteointegrative properties of BCP in irradiated tissue. The BCP-TBM mixture significantly improved bone ingrowth (p<0.05). The BCP-MSCs mixtures did not provide new-bone formation over and above that induced by BCP alone. This gives grounds for suspecting that there is a link between this result and the cellular and vascular weakness observed in irradiated bone. The BCP-TBM mixture may have induced an increased vascularization of irradiated bone. This could be due to the presence of all components in TBM that were lacking in the BCP-MSCs mixtures. BCP associated with TBM appears to be the most efficient material for bone substitution in irradiated areas.
机译:这项研究的目的是在大鼠模型中比较使用间充质干细胞(MSC)或全骨髓(TBM)与双相磷酸钙(BCP)颗粒进行的骨重建。在大鼠后肢外部照射三周后,每只动物产生了四个骨缺损。单独用BCP或用BCP和TBM的混合物,或用BCP和MSC(脂肪来源或骨髓来源的MSC)混合物填充缺损。植入后三周,评估新骨形成。组织学检查显示受辐照组织中BCP的骨传导性和骨整合性。 BCP-TBM混合物显着改善了骨向内生长(p <0.05)。 BCP-MSCs混合物没有提供超过单独BCP诱导的新骨形成。这为怀疑这一结果与在辐照的骨骼中观察到的细胞和血管无力之间存在联系提供了依据。 BCP-TBM混合物可能导致受辐照骨骼的血管生成增加。这可能是由于BCP-MSCs混合物中缺少TBM中所有组分的存在。与TBM相关的BCP似乎是辐照区域中骨替代的最有效材料。

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