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首页> 外文期刊>Molecular pharmaceutics >Efficient microbubble- and ultrasound-mediated plasmid DNA delivery into a specific rat liver lobe via a targeted injection and acoustic exposure using a novel ultrasound system
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Efficient microbubble- and ultrasound-mediated plasmid DNA delivery into a specific rat liver lobe via a targeted injection and acoustic exposure using a novel ultrasound system

机译:使用新型超声系统,通过靶向注射和声暴露,有效地将微泡和超声介导的质粒DNA输送到特定的大鼠肝叶中

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摘要

To develop efficient gene delivery in larger animals, based on a previous mouse study, we explored the luciferase reporter gene transfer in rats by establishing a novel unfocused ultrasound system with simultaneous targeted injection of a plasmid and microbubble mixture into a specific liver lobe through a portal vein branch. Luciferase expression was significantly enhanced over 0-30 vol % of the Definity microbubbles, with a plateau between 0.5 and 30 vol %. The increase of gene delivery efficiency also depended on the acoustic peak negative pressure, achieving over 100-fold enhancement at 2.5 MPa compared with plasmid only controls. Transient, modest liver damage following treatment was assessed by transaminase assays and histology, both of which correlated with gene expression induced by acoustic cavitation. In addition, pulse-train ultrasound exposures (i.e., with relatively long quiescent periods between groups of pulses to allow tissue refill with microbubbles) produced gene expression levels comparable to the standard US exposure but reduced the extent of liver damage. These results indicated that unfocused high intensity therapeutic ultrasound exposure with microbubbles is highly promising for safe and efficient gene delivery into the liver of rats or larger animals.
机译:为了在较大的动物中开发有效的基因传递,基于先前的小鼠研究,我们通过建立新型的非聚焦超声系统,同时通过门户将质粒和微泡混合物同时靶向注入特定的肝叶,探索了大鼠中的萤光素酶报告基因转移静脉分支。萤光素酶表达在Definity微泡的0-30%(体积)内显着增强,在0.5-30%(体积)之间处于平稳状态。基因传递效率的提高还取决于声峰负压,与仅质粒的对照相比,在2.5 MPa时达到100倍以上的增强。通过转氨酶测​​定和组织学评估了治疗后的短暂,适度肝损伤,二者均与声空化诱导的基因表达相关。另外,脉冲串超声暴露(即,在脉冲组之间具有相对较长的静止期以允许组织用微泡重新填充)产生的基因表达水平与美国标准暴露相当,但是减少了肝损伤的程度。这些结果表明,用微泡进行无聚焦的高强度超声治疗对于将基因安全有效地传递到大鼠或更大动物的肝脏中非常有希望。

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