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首页> 外文期刊>Human gene therapy >MACF1 Overexpression by Transfecting the 21 kbp Large Plasmid PEGFP-C1A-ACF7 Promotes Osteoblast Differentiation and Bone Formation
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MACF1 Overexpression by Transfecting the 21 kbp Large Plasmid PEGFP-C1A-ACF7 Promotes Osteoblast Differentiation and Bone Formation

机译:MacF1通过转染21kbp大质粒pegfp-c1a-acf7来过表达促进成骨细胞分化和骨形成

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摘要

Microtubule actin crosslinking factor 1 (MACF1) is a large spectraplakin protein known to have crucial roles in regulating cytoskeletal dynamics, cell migration, growth, and differentiation. However, its role and action mechanism in bone remain unclear. The present study investigated optimal conditions for effective transfection of the large plasmid PEGFP-C1A-ACF7 (~21 kbp) containing full-length human MACF1 cDNA, as well as the potential role of MACF1 in bone formation. To enhance MACF1 expression, the plasmid was transfected into osteogenic cells by electroporation in vitro and into mouse calvaria with nanoparticles. Then, transfection efficiency, osteogenic marker expression, calvarial thickness, and bone formation were analyzed. Notably, MACF1 overexpression triggered a drastic increase in osteogenic gene expression, alkaline phosphatase activity, and matrix mineralization in vitro . Mouse calvarial thickness, mineral apposition rate, and osteogenic marker protein expression were significantly enhanced by local transfection. In addition, MACF1 overexpression promoted β-catenin expression and signaling. In conclusion, MACF1 overexpression by transfecting the large plasmid containing full-length MACF1 cDNA promotes osteoblast differentiation and bone formation via β-catenin signaling. Current data will provide useful experimental parameters for the transfection of large plasmids and a novel strategy based on promoting bone formation for prevention and therapy of bone disorders.
机译:微管肌动蛋白交联因子1(MACF1)是已知在调节细胞骨骼动力学,细胞迁移,生长和分化中具有至关重要的作用的大型光谱蛋白。然而,它的骨骼中的作用和动作机制仍然不清楚。本研究研究了有效转染大质粒PEGFP-C1A-ACF7(〜21kbp)含有全长人MACF1 cDNA的最佳条件,以及MACF1在骨形成中的潜在作用。为了增强MACF1表达,通过体外电穿孔将质粒转染到骨质发生细胞中,并用纳米颗粒进入小鼠CALVARIA。然后分析转染效率,骨质原性标记表达,颅厚度和骨形成。值得注意的是,MACF1过表达在体外引发骨质原基因表达,碱性磷酸酶活性和基质矿化的激烈增加。局部转染显着提高了鼠标颅壳厚度,矿物链接率和成骨标志物蛋白表达。此外,MACF1过表达促进了β-连环蛋白的表达和信号传导。总之,通过转染含有全长MACF1 cDNA的大质粒的MACF1过表达促进通过β-catenin信号传导的成骨细胞分化和骨形成。目前的数据将为转染大质粒和基于促进骨髓性骨髓性疾病治疗的骨形成的新型策略提供有用的实验参数。

著录项

  • 来源
    《Human gene therapy》 |2018年第2期|共12页
  • 作者单位

    Bone Metabolism Lab School of Life Sciences Northwestern Polytechnical University Xi'an Shaanxi;

    Bone Metabolism Lab School of Life Sciences Northwestern Polytechnical University Xi'an Shaanxi;

    Bone Metabolism Lab School of Life Sciences Northwestern Polytechnical University Xi'an Shaanxi;

    Bone Metabolism Lab School of Life Sciences Northwestern Polytechnical University Xi'an Shaanxi;

    Bone Metabolism Lab School of Life Sciences Northwestern Polytechnical University Xi'an Shaanxi;

    Bone Metabolism Lab School of Life Sciences Northwestern Polytechnical University Xi'an Shaanxi;

    Bone Metabolism Lab School of Life Sciences Northwestern Polytechnical University Xi'an Shaanxi;

    Bone Metabolism Lab School of Life Sciences Northwestern Polytechnical University Xi'an Shaanxi;

    Bone Metabolism Lab School of Life Sciences Northwestern Polytechnical University Xi'an Shaanxi;

    Bone Metabolism Lab School of Life Sciences Northwestern Polytechnical University Xi'an Shaanxi;

    Bone Metabolism Lab School of Life Sciences Northwestern Polytechnical University Xi'an Shaanxi;

    Bone Metabolism Lab School of Life Sciences Northwestern Polytechnical University Xi'an Shaanxi;

    Bone Metabolism Lab School of Life Sciences Northwestern Polytechnical University Xi'an Shaanxi;

    Shenzhen Research Institute of Northwestern Polytechnical University Shenzhen Guangdong China;

    Sansom Institute for Health Research School of Pharmacy and Medical Sciences University of South;

    Bone Metabolism Lab School of Life Sciences Northwestern Polytechnical University Xi'an Shaanxi;

    Sansom Institute for Health Research School of Pharmacy and Medical Sciences University of South;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 治疗学;
  • 关键词

    MACF1; large plasmid; osteoblast; bone formation;

    机译:MacF1;大质粒;成骨细胞;骨形成;

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