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Skeletal muscle targeting in vivo electroporation-mediated HGF gene therapy of bleomycin-induced pulmonary fibrosis in mice

机译:骨骼肌靶向体内电穿孔介导的博莱霉素诱导的小鼠肺纤维化的HGF基因治疗

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Lung fibrosis is a common feature of interstitial lung diseases, and apoptosis and fibrinogenesis play critical roles in its formation and progression. Hepatocyte growth factor (HGF) is one of the ideal therapeutic agents for prevention of lung fibrosis because of its antiapoptotic and fibrinolytic effects. The aim of this study is to establish nonviral HGF gene therapy of bleomycin-induced lung fibrosis avoiding the viral vector-related side effects. C57BL/6 mice were injected with 3.0mg/kg body weight of bleomycin intratracheally. Following bleomycin injection, 50l of pUC-HGF (1mg/ml) was injected into each of the quadriceps muscle. Immediately after plasmid injection, in vivo electroporation was performed with pulse generator. Skeletal muscle-targeting electroporation induced transgene expression on day 1 and persisted for 4 weeks, and human HGF was also detected in the lung. In mice transferred with HGF, pathological score (1.00.3 vs 3.20.6), TUNEL-positive cell index (4.51.1 vs 14.23.1), and hydroxyproline content (9.01.3 vs 14.45.1mol/g) were significantly reduced compared with the control. Furthermore, survival rate of HGF mice was significantly improved compared with the control. Our data indicate that HGF gene therapy with a single skeletal muscle-targeting electroporation has a therapeutic potential for bleomycin-induced lung fibrosis and this strategy can be applied as a practical gene therapy protocol for various organs.
机译:肺纤维化是间质性肺疾病的共同特征,细胞凋亡和纤维蛋白生成在其形成和发展中起关键作用。肝细胞生长因子(HGF)具有抗凋亡和纤溶作用,是预防肺纤维化的理想治疗剂之一。这项研究的目的是建立避免博莱霉素诱导的肺纤维化的非病毒HGF基因疗法,从而避免与病毒载体相关的副作用。给C57BL / 6小鼠气管内注射3.0mg / kg体重的博来霉素。博来霉素注射后,将50μl的pUC-HGF(1mg / ml)注射到每个股四头肌中。质粒注射后,立即用脉冲发生器进行体内电穿孔。靶向骨骼肌的电穿孔在第1天诱导转基因表达,并持续4周,并且还在肺中检测到人HGF。在移植了HGF的小鼠中,病理评分(1.00.3 vs 3.20.6),TUNEL阳性细胞指数(4.51.1 vs 14.23.1)和羟脯氨酸含量(9.01.3 vs 14.45.1mol / g)显着降低。与对照相比。此外,与对照组相比,HGF小鼠的存活率显着提高。我们的数据表明,以单个骨骼肌为靶点的电穿孔进行HGF基因治疗具有博来霉素诱导的肺纤维化的治疗潜力,并且该策略可以用作各种器官的实用基因治疗方案。

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