首页> 外文期刊>Journal of biomedical materials research, Part A >Repair of segmental bone-defect of goat's tibia using a dynamic perfusion culture tissue engineering bone
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Repair of segmental bone-defect of goat's tibia using a dynamic perfusion culture tissue engineering bone

机译:动态灌注培养组织工程骨修复山羊胫骨节段性骨缺损

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摘要

Segmental bone defect resulted from trauma or excision of bone tumor or pathology represents a common and significant clinical problem. In an attempt to solve this dilemma, we use β-TCP combined with autologous bone marrow mesenchymal stem cells (auto-BMSC) and cultured by dynamic perfusion to repair the segmental bone defects of goat's tibia. The β-TCP scaffolds combined with auto-BMSC by dynamic perfusion bioreactor or in static state were respectively transplanted into the defect (30 mm) of the goat tibias. The X-ray films were gathered and analyzed at the different time points. At 24 weeks post-operation, tissue engineering bones implanted were analyzed by histology and Micro-CT. Results show that the capacity of osteogenesis in experimental group was higher than that of control group by X-ray, histological, and micro-CT analysis (p < 0.05). According to the study, we found that repair for segmental bone defects of tissue engineering bone cultured by dynamic perfusion culture bioreactor outweigh those cultured in static state. And we can conclude that this technology of tissue engineering bone will become a clinical method to the segmental bone-defects repair in the future.
机译:由创伤,骨肿瘤或病理学切除引起的节段性骨缺损代表了普遍而重要的临床问题。为了解决这一难题,我们将β-TCP与自体骨髓间充质干细胞(auto-BMSC)结合使用,并通过动态灌注培养来修复山羊胫骨的节段性骨缺损。通过动态灌注生物反应器或静态将β-TCP支架与auto-BMSC结合,分别移植到山羊胫骨缺损处(30 mm)。在不同的时间点收集X射线胶片并进行分析。术后24周,通过组织学和Mi​​cro-CT分析植入的组织工程骨。结果表明,通过X射线,组织学和显微CT分析,实验组的成骨能力均高于对照组(p <0.05)。根据这项研究,我们发现用动态灌注培养生物反应器培养的组织工程骨节段性骨缺损的修复胜过静态培养的那些。可以断定,这种组织工程骨技术将成为未来修复节段性骨缺损的临床方法。

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