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体内DNA电转染的机制:细胞电穿孔和DNA电泳各自的作用

Mechanisms of in vivo DNA electrotransfer: respective contributions of cell electropermeabilization and DNA electrophoresis.

作者信息

Satkauskas Saulius, Bureau Michel F, Puc Marko, Mahfoudi Abderrahim, Scherman Daniel, Miklavcic Damijan, Mir Lluis M

机构信息

LPPMB, UMR 8532 CNRS, Institute Gustave-Roussy, F-94805 Villejuif, France.

出版信息

Mol Ther. 2002 Feb;5(2):133-40. doi: 10.1006/mthe.2002.0526.

DOI:10.1006/mthe.2002.0526
PMID:11829520
Abstract

Efficient cell electrotransfection can be achieved using combinations of high-voltage (HV; 800 V/cm, 100 micros) and low-voltage (LV; 80 V/cm, 100 ms) pulses. We have developed equipment allowing the generation of various HV and LV combinations with precise control of the lag between the HV and LV pulses. We injected luciferase-encoding DNA in skeletal muscle, before or after pulse delivery, and measured luciferase expression after various pulse combinations. In parallel, we determined permeabilization levels using uptake of (51)Cr-labeled EDTA. High voltage alone resulted in a high level of muscle permeabilization for 300 seconds, but very low DNA transfer. Combinations of one HV pulse followed by one or four LV pulses did not prolong the high permeabilization level, but resulted in a large increase in DNA transfer for lags up to 100 seconds in the case of one HV + one LV and up to 3000 seconds in the case of one HV + four LV. DNA expression also reached similar levels when we injected the DNA between the HV and LV pulses. We conclude that the role of the HV pulse is limited to muscle cell permeabilization and that the LV pulses have a direct effect on DNA. In vivo DNA electrotransfer is thus a multistep process that includes DNA distribution, muscle permeabilization, and DNA electrophoresis.

摘要

使用高压(HV;800 V/cm,100微秒)和低压(LV;80 V/cm,100毫秒)脉冲组合可实现高效的细胞电穿孔。我们开发了一种设备,能够产生各种HV和LV组合,并精确控制HV和LV脉冲之间的延迟。在施加脉冲之前或之后,我们将编码荧光素酶的DNA注入骨骼肌,并在各种脉冲组合后测量荧光素酶的表达。同时,我们使用(51)Cr标记的EDTA摄取来确定通透化水平。单独的高压会导致高水平的肌肉通透化持续300秒,但DNA转移效率非常低。一个HV脉冲后跟一个或四个LV脉冲的组合并没有延长高通透化水平,但在一个HV +一个LV的情况下,对于长达100秒的延迟以及在一个HV +四个LV的情况下长达3000秒的延迟,DNA转移有大幅增加。当我们在HV和LV脉冲之间注入DNA时,DNA表达也达到了类似水平。我们得出结论,HV脉冲的作用仅限于使肌肉细胞通透化,而LV脉冲对DNA有直接作用。因此,体内DNA电转移是一个多步骤过程,包括DNA分布、肌肉通透化和DNA电泳。

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