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作 者:武欣[1] 祝威[1] 王苹[1] 傅仲鹰[1] 陈玮伦[1] 杨田田[1]
机构地区:[1]吉林大学第一医院耳鼻咽喉-头颈外科,长春130000
出 处:《临床耳鼻咽喉头颈外科杂志》2016年第22期1782-1784,1789,共4页Journal of Clinical Otorhinolaryngology Head And Neck Surgery
摘 要:目的:探讨骨髓间充质干细胞(BMMSCs)与左旋聚乳酸/丝素蛋白(PLLA/SF)支架复合物修复兔口腔黏膜的可行性,同时评估PLLA与SF以何种比例混合构建组织工程口腔黏膜支架最理想。方法:分离、培养并鉴定BMMSCs,将其置于PLLA与SF的质量配比为70∶30(P70S30)PLLA/SF支架上复合培养1周后观察细胞表型有无改变;观察BMMSCs与P70S30的PLLA/SF支架复合物的口腔黏膜移植1周后的结构变化;比较细胞与支架复合物组、单纯支架组、创面自然修复组的创面愈合率。结果:1PLLA/SF支架对BMMSCs的细胞表型无明显影响;2BMMSCs与P70S30的PLLA/SF支架复合物口腔黏膜移植1周后与创面的融合较好;3以PLLA与SF的质量配比为70∶30的复合物组愈合率最高,平均愈合率为94.8%,与创面自然修复组及单纯支架组比较差异有统计学意义(P<0.01)。结论:1BMMSCs与PLLA/SF支架复合物具有构建理想的组织工程口腔黏膜的潜力;2PLLA与SF的质量配比为70∶30时最利于口腔黏膜创面的愈合,构建理想的组织工程口腔黏膜的潜力最大。Objective:This experiment proposed to complicate BMMSCs and PLLA/SF scaffolds,to study its repairing ability for rabbit oral mucosa wound,and try to evaluate the most potential mixed proportion of PLLA and SF for tissue engineering.Method:Separating,cultivating and identifying BMMSCs.Observing cell phenotype of BMMSCs after cultivating BMMSCs in P70S30PLLA/SF scaffold for one week.Observing the structure change of BMMSCs and P70S30PLLA/SF scaffold complexes after oral mucosa transplantation experiment for a week;Comparing the wound healing rate of composite of BMMSCs and PLLA/SF scafold,PLLA/SF scaffold and nature repair.Result:1There wasn't a significant effect of PLLA/SF scaffold on cell phenotype of BMMSCs.2The wounds fused well with the oral mucosa transplanted composite of BMMSCs and P70S30PLLA/SF scaffold after a week.3The healing rate of composite of BMMSCs and P70S30 scaffold was the highest.The average healing rate of composite of BMMSCs and P70S30 scaffold was 94.8%,whose difference was statistically significant compared with natural healing and pure scaffold(P〈0.01).Conclusion:1The complex composed of BMMSCs and PLLA/SF scaffolds has the potential as an ideal scaffold for tissue engineering oral mucosa.2The complex composed of BMMSCs and P70S30PLLA/SF scaffolds is the most beneficial to wound healing of oral mucosa,and has the greatest potential for constructing tissue engineering oral mucosa.
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