首页> 外文期刊>The Journal of Musculoskeletal and Neuronal Interactions >Combined construction of injectable tissue-engineered bone with CPC and BMMSCs and its study of repair effect on rabbit bone defect model
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Combined construction of injectable tissue-engineered bone with CPC and BMMSCs and its study of repair effect on rabbit bone defect model

机译:CPC和BMMSCs的注射组织工程骨综合构建及其对兔骨缺陷模型的修复效果研究

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Objective: to investigate the combined construction of injectable tissue-engineered bone with calcium phosphate bone cementcomposite (CPC) and bone marrow mesenchymal stem cells (BMMSCs). Methods: The proliferation activity of BMMSCs encapsulatedwas detected by CCK8 method on the 7th day after its self-coagulation by CPC. qRT-PCR was used to detect the expressions of mRNA.The microcapsules of BMMSCs combined with CPC were completely filled in the defect site in the experimental group, and the controlgroup not filled. The two groups were sutured and routinely reared, double upper limb X-ray examination performed after operation.Results: Those of two groups were on the rise over time, which were higher at the 1st, 3rd, 5th and 7th days than those at the previous timepoints (all P0.05). The relative expressions of ALP and CALCR at the 7th day were higher than those at the day in BMMSCs combinedwith the CPC group and BMMSCs group (all P0.05). The relative expression of CALCR was significantly higher in BMMSCs combinedwith the CPC group than that in the BMMSCs group on the 7th day (P0.05). Conclusion: With good cell activity and biological activity,the combined construction of the tissue-engineered bone with BMMSCs and CPC can be used as an ideal treatment material for bonetissue repair and connection.
机译:目的:探讨用磷酸钙骨碳水化合物(CPC)和骨髓间充质干细胞(BMMSC)的注射组织工程骨的组合结构。方法:CCK8方法在其自凝固后的第7天通过CCC通过CCC凝结后第7天检测到BMMSCS包装的增殖活性。 QRT-PCR用于检测mRNA的表达。BMMSCs与CPC结合的微胶囊完全填充在实验组的缺陷部位,并未填充对照组。两组被缝合并经常饲养,双重上肢X射线检查进行操作后进行。结果:两组的那些随着时间的推移,在第1,第3,第5天和第7天的升高而比那些更高以前的时间点(所有P <0.05)。第7天的ALP和CALCR的相对表达高于CPC组和BMMSCS组的BMMSCS中白天的相对表达(所有P <0.05)。 BMMSC组合CPC组的CALCR的相对表达显着高于第7天的BMMSC组中的(P <0.05)。结论:具有良好的细胞活性和生物活性,组织工程骨与BMMSCs和CPC的组合骨骼组合结构可用作Bonetissue修复和连接的理想处理材料。

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