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首页> 外文期刊>Biochemical and Biophysical Research Communications >Low-amplitude ultrasound enhances hydrodynamic-based gene delivery to rat kidney.
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Low-amplitude ultrasound enhances hydrodynamic-based gene delivery to rat kidney.

机译:低振幅超声可增强基于水动力的基因向大鼠肾脏的递送。

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摘要

The synergistic combination of hydrodynamic-based gene delivery and ultrasound was investigated to achieve improved gene transfer to the kidney. Plasmids encoding firefly luciferase and Erythropoietin (EPO) gene were delivered into the left kidney of rats by single or combinative application of renal vein hydrodynamic injection and ultrasound treatment with or without the addition of ultrasound contrast agents (UCA). Ultrasound exposure was found to enhance the efficiency of hydrodynamic-based gene delivery for both luciferase and EPO expression. An ultrasound exposure intensity of 2 W/cm2 at 10% duty cycle for 15 min, produced a maximal gene expression 4.5 times higher than hydrodynamic delivery alone. Duration, location, and tissue-specificity of gene expression were not changed by ultrasound exposure. Application of UCA reduced the intensity and exposure duration of ultrasound treatment needed for optimal expression. Appropriate application of ultrasound and UCA did not alter histological structure or impair physiological function of the treated kidney.
机译:研究了基于水动力的基因递送和超声的协同组合,以实现改善的基因向肾脏的转移。编码萤火虫荧光素酶和促红细胞生成素(EPO)基因的质粒通过单次或联合应用肾静脉水动力注射和超声处理(加或不加超声造影剂(UCA))被递送到大鼠的左肾。发现超声暴露可增强基于萤光素酶和EPO表达的基于流体力学的基因传递效率。在10%占空比下15分钟的2 W / cm2超声暴露强度产生的最大基因表达比单独的流体动力传递高4.5倍。超声暴露未改变基因表达的持续时间,位置和组织特异性。 UCA的应用减少了最佳表达所需的超声治疗的强度和暴露时间。适当使用超声波和UCA不会改变组织学结构或损害已治疗肾脏的生理功能。

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