Golzio Muriel, Teissie Justin, Rols Marie-Pierre
Institut de Pharmacologie et de Biologie Structurale Centre National de la Recherche Scientifique/Unité Mixte de Recherche-5089, 205, Route de Narbonne, 31077 Toulouse Cedex, France.
Proc Natl Acad Sci U S A. 2002 Feb 5;99(3):1292-7. doi: 10.1073/pnas.022646499. Epub 2002 Jan 29.
Electropermeabilization is one of the nonviral methods successfully used to transfer genes into living cells in vitro and in vivo. Although this approach shows promise in the field of gene therapy, very little is known about the basic processes supporting DNA transfer. The present investigation studies this process at the single-cell level by using digitized fluorescence microscopy. Permeabilization is a prerequisite for gene transfer. Its assay by propidium-iodide (PI) penetration shows that it occurs at the sides of the cell membrane facing the two electrodes, whereas fluorescently labeled plasmids only interact with the electropermeabilized side of the cell facing the cathode. The plasmid interaction with the electropermeabilized part of the cell surface results in the formation of localized aggregates. These membrane-associated spots are formed only when pulses with a longer duration than a critical value are applied. These complexes are formed within 1 s after the pulses and cannot be destroyed by pulses of reversed polarities. They remain at the membrane level up to 10 min after pulsing. Although freely accessible to DNA dye (TOTO-1) 1 min after the pulses, they are fully protected when the addition takes place 10 min after. They diffuse in the cytoplasm 30 min after pulses and are present around the nucleus 24 h later.
电穿孔法是一种成功用于在体外和体内将基因导入活细胞的非病毒方法。尽管这种方法在基因治疗领域显示出前景,但对于支持DNA转移的基本过程却知之甚少。本研究通过使用数字化荧光显微镜在单细胞水平上研究这一过程。通透化是基因转移的前提条件。通过碘化丙啶(PI)渗透进行的检测表明,通透化发生在细胞膜面向两个电极的侧面,而荧光标记的质粒仅与细胞面向阴极的电通透化侧面相互作用。质粒与细胞表面电通透化部分的相互作用导致形成局部聚集体。这些与膜相关的斑点仅在施加持续时间长于临界值的脉冲时形成。这些复合物在脉冲后1秒内形成,并且不能被极性相反的脉冲破坏。脉冲后它们在膜水平上保持长达10分钟。尽管在脉冲后1分钟可自由接触DNA染料(TOTO-1),但在脉冲后10分钟添加时它们受到充分保护。它们在脉冲后30分钟扩散到细胞质中,并在24小时后出现在细胞核周围。