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通透性与电泳力之间的关联对肌肉内DNA电转染的重要性。

Importance of association between permeabilization and electrophoretic forces for intramuscular DNA electrotransfer.

作者信息

Bureau M F, Gehl J, Deleuze V, Mir L M, Scherman D

机构信息

UMR 7001 CNRS/ENSCP/Aventis, Centre de Recherche de Vitry Alfortville, 13 quai Jules Guesde, BP 14, 94403 Vitry sur Seine Cedex, France.

出版信息

Biochim Biophys Acta. 2000 May 1;1474(3):353-9. doi: 10.1016/s0304-4165(00)00028-3.

Abstract

Gene transfer using electrical pulses is a rapidly expanding field. Many studies have been performed in vitro to elucidate the mechanism of DNA electrotransfer. In vivo, the use of efficient procedures for DNA electrotransfer in tissues is recent, and the question of the implied mechanisms is largely open. We have evaluated the effects of various combinations of square wave electric pulses of variable field strength and duration, on cell permeabilization and on DNA transfection in the skeletal muscle in vivo. One high voltage pulse of 800 V/cm, 0.1 ms duration (short high pulse) or a series of four low voltage pulses of 80 V/cm, 83 ms duration (long low pulses) slightly amplified transfection efficacy, while no significant permeabilization was detected using the (51)Cr-EDTA uptake test. By contrast, the combination of one short high pulse followed by four long low pulses led to optimal gene transfer efficiency, while inducing muscle fibers permeabilization. These results are consistent with additive effects of electropermeabilization and DNA electrophoresis on electrotransfer efficiency. Finally, the described new combination, as compared to the previously reported use of repeated identical pulses of intermediate voltage, leads to similar gene transfer efficiency, while causing less permeabilization and thus being likely less deleterious. Thus, combination of pulses of various strengths and durations is a new procedure for skeletal muscle gene transfer that may represents a clear improvement in view of further clinical development.

摘要

利用电脉冲进行基因转移是一个迅速发展的领域。已经进行了许多体外研究以阐明DNA电转移的机制。在体内,在组织中使用高效的DNA电转移程序是最近才出现的,而其中隐含的机制问题在很大程度上尚未解决。我们评估了不同场强和持续时间的方波电脉冲的各种组合对体内骨骼肌细胞通透性和DNA转染的影响。一个800 V/cm、持续时间0.1 ms的高压脉冲(短高压脉冲)或一系列四个80 V/cm、持续时间83 ms的低压脉冲(长低压脉冲)略微提高了转染效率,而使用(51)Cr-EDTA摄取试验未检测到明显的通透性。相比之下,一个短高压脉冲后跟四个长低压脉冲的组合导致了最佳的基因转移效率,同时诱导了肌纤维通透性。这些结果与电穿孔和DNA电泳对电转移效率的累加效应一致。最后,与先前报道的使用重复的相同中间电压脉冲相比,所描述的新组合导致相似的基因转移效率,同时引起的通透性较小,因此可能危害较小。因此,不同强度和持续时间的脉冲组合是一种用于骨骼肌基因转移的新方法,鉴于进一步的临床发展,这可能代表了一个明显的进步。

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