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首页> 外文期刊>Stem Cell Research & Therapy >The co-culture of ASCs and EPCs promotes vascularized bone regeneration in critical-sized bone defects of cranial bone in rats
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The co-culture of ASCs and EPCs promotes vascularized bone regeneration in critical-sized bone defects of cranial bone in rats

机译:ASCS和EPCS的共同培养促进血管化骨再生在大鼠颅骨的临界骨缺损中

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BACKGROUND:The repair of critical-sized bone defect represents a challenging problem in bone tissue engineering. To address the most important problem in bone defect repair, namely insufficient blood supply, this study aimed to find a method that can promote the formation of vascularized bone tissue.METHOD:The phenotypes of ASCs and EPCs were identified respectively, and ASCs/EPCs were co-cultured in vitro to detect the expression of osteogenic and angiogenic genes. Furthermore, the co-culture system combined with scaffold material was used to repair the critical-sized bone defects of the cranial bone in rats.RESULTS:The co-culture of ASCs/EPCs could increase osteogenesis and angiogenesis-related gene expression in vitro. The results of in vivo animal experiments demonstrated that the ASC/EPC group could promote bone regeneration and vascularization in the meantime and then significantly accelerate the repair of critical-sized bone defects.CONCLUSION:It is feasible to replace traditional single seed cells with ASC/EPC co-culture system for vascularized bone regeneration. This system could ultimately enable clinicians to better repair the defect of craniofacial bone and avoid donor site morbidity.
机译:背景:临界大小骨缺损的修复是骨组织工程中有挑战性的问题。为了解决骨缺损修复中最重要的问题,即血液供应不足,该研究旨在找到一种可以促进血管化骨组织形成的方法。分别鉴定了ASC和EPC的表型,ASCS / EPC共同培养体外,以检测成骨和血管生成基因的表达。此外,使用与支架材料结合的共培养系统来修复大鼠颅骨的临界骨缺陷。结果:ASCS / EPC的共培养可以增加体外骨质发生和血管生成相关的基因表达。体内动物实验的结果表明,ASC / EPC组可以在此期间促进骨再生和血管化,然后显着加速临界骨缺损的修复。结论:用ASC /替代传统的单种子细胞是可行的血管化骨再生的EPC共同培养系统。该系统最终可能使临床医生能够更好地修复颅面骨的缺陷并避免供体现场的发病率。

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