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质粒DNA拓扑结构对DOTAP/DOPE脂质体转染特性的影响。

Influence of plasmid DNA topology on the transfection properties of DOTAP/DOPE lipoplexes.

作者信息

Remaut Katrien, Sanders Niek N, Fayazpour Farzaneh, Demeester Jozef, De Smedt Stefaan C

机构信息

Laboratory of General Biochemistry and Physical Pharmacy, Ghent University, Harelbekestraat 72, 9000 Ghent, Belgium.

出版信息

J Control Release. 2006 Oct 27;115(3):335-43. doi: 10.1016/j.jconrel.2006.08.009. Epub 2006 Aug 18.

Abstract

Plasmid DNA (pDNA) can occur in the compact supercoiled (SC) form, the relaxed open circular (OC) form and the linearized form. In this paper we investigated the transfection efficiency of SC, OC and linearized pDNA complexed to DOTAP/DOPE liposomes in Vero cells. Only DOTAP/DOPE liposomes containing SC pDNA showed protein expression while DOTAP/DOPE liposomes loaded with OC or linearized pDNA failed. First we questioned if the better transfection properties of the SC pDNA-containing lipoplexes could be due to a better transcription of SC pDNA in the nuclei of the cells, compared to OC and linearized pDNA. However, microinjecting (naked) SC, OC or linearized pDNA in the nuclei of the Vero cells revealed that the transcription efficiency was independent on the pDNA topology but did depend on the intranuclear concentration of the pDNA. As the amount of pDNA that reaches the nucleus is determined by the amount of pDNA that arrives in the cytosol it could be hypothesized that SC pDNA is more efficiently released from the DOTAP/DOPE liposomes when compared to OC and linearized pDNA. However, microinjecting comparable concentrations of the pDNA topologies in the cytoplasm still resulted in a significantly higher transfection in the case of SC pDNA, especially in cells that underwent cell division in the period after injection. It seems that, compared to OC and linearized pDNA, SC pDNA is better suited to reach the perinuclear region, a prerequisite to become entrapped in the nuclei of the cells during cell division.

摘要

质粒DNA(pDNA)可以以紧密的超螺旋(SC)形式、松弛的开环(OC)形式和线性化形式存在。在本文中,我们研究了与DOTAP/DOPE脂质体复合的SC、OC和线性化pDNA在Vero细胞中的转染效率。只有含有SC pDNA的DOTAP/DOPE脂质体显示出蛋白质表达,而装载OC或线性化pDNA的DOTAP/DOPE脂质体则未能表达。首先,我们质疑与OC和线性化pDNA相比,含SC pDNA的脂质复合物更好的转染特性是否可能是由于SC pDNA在细胞核中具有更好的转录能力。然而,将(裸)SC、OC或线性化pDNA微注射到Vero细胞的细胞核中发现,转录效率与pDNA的拓扑结构无关,但确实取决于pDNA的核内浓度。由于到达细胞核的pDNA量由进入细胞质的pDNA量决定,因此可以推测,与OC和线性化pDNA相比,SC pDNA从DOTAP/DOPE脂质体中释放的效率更高。然而,在细胞质中微注射相当浓度的pDNA拓扑结构,在SC pDNA的情况下仍导致显著更高的转染率,特别是在注射后进行细胞分裂的细胞中。似乎与OC和线性化pDNA相比,SC pDNA更适合到达核周区域,这是在细胞分裂期间被捕获在细胞核中的先决条件。

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