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首页> 外文期刊>Cytotherapy >Research on promoting periodontal regeneration with human basic fibroblast growth factor-modified bone marrow mesenchymal stromal cell gene therapy
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Research on promoting periodontal regeneration with human basic fibroblast growth factor-modified bone marrow mesenchymal stromal cell gene therapy

机译:人碱性成纤维细胞生长因子修饰的骨髓间充质基质细胞基因疗法促进牙周再生的研究

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Background aims Recently, it has been found that effective periodontal regeneration can be induced by bone marrow mesenchymal stromal cell (BMSC) transplantation or local application of basic fibroblast growth factor (bFGF). The aim of the present study was to assess, in dogs, the efficacy of periodontal regeneration via the delivery of BMSC transfected with bFGF to repair destruction of periodontal tissue. Methods BMSC from dogs were isolated, cultured and purified via density-gradient centrifugation. Polymerase chain reaction (PCR) was employed to clone bFGF cDNA from human periodontal cells, and the product was then ligated into the eukaryotic expression vector pDC316-IREs-EGFP. BMSC transfected with pDC316bFGF-IREs-EGFP were transplanted into root furcation defects of beagle dogs. After 6 weeks, regeneration in defects was assessed via clinical examination, X-ray, histologic observation and micro-CT analysis. Results DNA sequence analysis showed that the bFGF sequence of recombinant plasmid pDC316bFGF-IREs-EGFP was consistent with that reported by GeneBank. bFGF expression was detected with Western blotting, and active bFGF in supernatant was also observed. Our animal experiment proved that the regenerating speed of periodontal bone tissue in groups transplanted with BMSC containing the modified bFGF gene was higher than in those transplanted with BMSC alone. Conclusions A successfully constructed eukaryotic expression vector containing human bFGF in pDC316bFGF-IREs-EGFP could produce bioactive bFGF in vitro. bFGF overexpression mediated by the recombinant plasmid pDC316bFGF- IREs-EGFP accelerated periodontal regeneration.
机译:背景技术近来,已经发现可以通过骨髓间充质基质细胞(BMSC)移植或碱性成纤维细胞生长因子(bFGF)的局部应用来诱导有效的牙周再生。本研究的目的是通过在犬中通过转染bFGF的BMSC修复牙周组织的破坏来评估牙周再生的功效。方法采用密度梯度离心法分离,培养和纯化犬骨髓间充质干细胞。用聚合酶链反应(PCR)从人牙周细胞克隆bFGF cDNA,然后将产物连接到真核表达载体pDC316-IREs-EGFP。用pDC316bFGF-IREs-EGFP转染的BMSC被移植到比格犬的根分叉缺损中。 6周后,通过临床检查,X射线,组织学观察和显微CT分析评估缺损的再生。结果DNA序列分析表明重组质粒pDC316bFGF-IREs-EGFP的bFGF序列与GeneBank报道的一致。通过Western印迹检测bFGF表达,并且还观察到上清液中的活性bFGF。我们的动物实验证明,用含有经修饰的bFGF基因的BMSC移植的组,牙周骨组织的再生速度要高于单独用BMSC移植的组。结论成功构建的在pDC316bFGF-IREs-EGFP中含有人bFGF的真核表达载体可在体外产生生物活性bFGF。重组质粒pDC316bFGF-IREs-EGFP介导的bFGF过表达促进牙周再生。

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