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Novel electric power-driven hydrodynamic injection system for gene delivery: Safety and efficacy of human factor IX delivery in rats

机译:用于基因传递的新型电力驱动的液力注射系统:大鼠中人因子IX传递的安全性和有效性

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The development of a safe and reproducible gene delivery system is an essential step toward the clinical application of the hydrodynamic gene delivery (HGD) method. For this purpose, we have developed a novel electric power-driven injection system called the HydroJector-EM, which can replicate various time-pressure curves preloaded into the computer program before injection. The assessment of the reproducibility and safety of gene delivery system in vitro and in vivo demonstrated the precise replication of intravascular time-pressure curves and the reproducibility of gene delivery efficiency. The highest level of luciferase expression (272 pg luciferase per mg of proteins) was achieved safely using the time-pressure curve, which reaches 30 mm Hg in 10 s among various curves tested. Using this curve, the sustained expression of a therapeutic level of human factor IX protein (>500 ng ml-1) was maintained for 2 months after the HGD of the pBS-HCRHP-FIXIA plasmid. Other than a transient increase in liver enzymes that recovered in a few days, no adverse events were seen in rats. These results confirm the effectiveness of the HydroJector-EM for reproducible gene delivery and demonstrate that long-term therapeutic gene expression can be achieved by automatic computer-controlled hydrodynamic injection that can be performed by anyone.
机译:安全和可复制的基因传递系统的开发是流体动力学基因传递(HGD)方法在临床应用中必不可少的一步。为此,我们开发了一种新型的电动注射系统,称为HydroJector-EM,该系统可以复制注射前预加载到计算机程序中的各种时间-压力曲线。体外和体内基因递送系统的可重复性和安全性评估表明,血管内时间-压力曲线的精确复制和基因递送效率的可重复性。使用时间-压力曲线可以安全地达到最高水平的荧光素酶表达水平(272 pg荧光素酶),在各种测试曲线中,其在10 s内达到30 mm Hg。使用该曲线,在pBS-HCRHP-FIXIA质粒的HGD之后,治疗水平的人类因子IX蛋白(> 500 ng ml-1)的持续表达维持了2个月。除了几天后恢复的肝酶短暂增加外,在大鼠中未观察到任何不良事件。这些结果证实了HydroJector-EM对于可再现基因传递的有效性,并证明可以通过任何人都可以进行的自动计算机控制的流体动力注射来实现长期治疗性基因表达。

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