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高、低压脉冲组合用于肌肉、肝脏、肿瘤和皮肤基因电转染的效率

Efficiency of high- and low-voltage pulse combinations for gene electrotransfer in muscle, liver, tumor, and skin.

作者信息

André F M, Gehl J, Sersa G, Préat V, Hojman P, Eriksen J, Golzio M, Cemazar M, Pavselj N, Rols M-P, Miklavcic D, Neumann E, Teissié J, Mir L M

机构信息

CNRS, UMR 8121, Institute Gustave-Roussy, F-94805 Villejuif Cédex, France.

出版信息

Hum Gene Ther. 2008 Nov;19(11):1261-71. doi: 10.1089/hum.2008.060.

Abstract

Gene electrotransfer is gaining momentum as an efficient methodology for nonviral gene transfer. In skeletal muscle, data suggest that electric pulses play two roles: structurally permeabilizing the muscle fibers and electrophoretically supporting the migration of DNA toward or across the permeabilized membrane. To investigate this further, combinations of permeabilizing short high-voltage pulses (HV; hundreds of V/cm) and mainly electrophoretic long low-voltage pulses (LV; tens of V/cm) were investigated in muscle, liver, tumor, and skin in rodent models. The following observations were made: (1) Striking differences between the various tissues were found, likely related to cell size and tissue organization; (2) gene expression is increased, if there was a time interval between the HV pulse and the LV pulse; (3) the HV pulse was required for high electrotransfer to muscle, tumor, and skin, but not to liver; and (4) efficient gene electrotransfer was achieved with HV field strengths below the detectability thresholds for permeabilization; and (5) the lag time interval between the HV and LV pulses decreased sensitivity to the HV pulses, enabling a wider HV amplitude range. In conclusion, HV plus LV pulses represent an efficient and safe option for future clinical trials and we suggest recommendations for gene transfer to various types of tissues.

摘要

基因电穿孔作为一种高效的非病毒基因转移方法正越来越受到关注。在骨骼肌中,数据表明电脉冲发挥着两种作用:在结构上使肌纤维通透化,并在电泳方面支持DNA向通透化膜迁移或穿过该膜。为了进一步研究这一点,在啮齿动物模型的肌肉、肝脏、肿瘤和皮肤中研究了通透化短高压脉冲(HV;数百伏/厘米)和主要是电泳长低压脉冲(LV;数十伏/厘米)的组合。得到了以下观察结果:(1)发现不同组织之间存在显著差异,这可能与细胞大小和组织结构有关;(2)如果HV脉冲和LV脉冲之间存在时间间隔,基因表达会增加;(3)向肌肉、肿瘤和皮肤进行高效电穿孔需要HV脉冲,但向肝脏进行电穿孔则不需要;(4)在低于通透化检测阈值的HV场强下也能实现高效的基因电穿孔;(5)HV脉冲和LV脉冲之间的延迟时间间隔降低了对HV脉冲的敏感性,从而允许更宽的HV幅度范围。总之,HV加LV脉冲代表了未来临床试验的一种高效且安全的选择,并且我们针对向各种类型组织进行基因转移提出了建议。

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