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细胞内化和转染效率对阳离子去污剂/DNA/脂质体结构及物理化学性质的依赖性。

Dependence of the cellular internalization and transfection efficiency on the structure and physicochemical properties of cationic detergent/DNA/liposomes.

作者信息

Llères David, Weibel Jean-Marc, Heissler Denis, Zuber Guy, Duportail Guy, Mély Yves

机构信息

Laboratoire de Pharmacologie et Physicochimie des Interactions Cellulaires et Moléculaires, UMR 7034 du CNRS, Faculté de Pharmacie, Université Louis Pasteur, B.P. 24, 67401 Illkirch Cedex, France.

出版信息

J Gene Med. 2004 Apr;6(4):415-28. doi: 10.1002/jgm.539.

Abstract

BACKGROUND

Control of the structure and physicochemical properties of DNA complexed with nonviral vectors is essential for efficient biodistribution and gene delivery to cells. Cationic liposomes interact with DNA giving transfection competent but large and heterogeneous aggregates. On the other hand, cationic detergents condense DNA into small homogeneous but reversible complexes inefficient for transfection.

METHODS

In order to combine the favorable features of both vectors, ternary complexes were prepared by adding cationic liposomes to plasmid DNA condensed by cationic detergents. The structure and physicochemical properties of these complexes were investigated by electron microscopy, quasi-elastic light scattering, gel electrophoresis and fluorescence techniques. These data were then correlated with the transfection efficiency and intracellular trafficking of the ternary complexes determined by luciferase gene expression and confocal microscopy, respectively.

RESULTS

The ternary complexes were found to form small, homogeneous, globular, stable and positively charged particles with a highly dense and packed lamellar internal structure differing from the multilamellar structure (L(alpha)(C)) of the corresponding lipoplexes. In the presence of serum, the ternary complexes were more efficiently internalized into cells, less toxic and showed 20-fold higher transfection efficiency than lipoplexes.

CONCLUSIONS

This study showed that small, monodisperse and highly stable complexes could be obtained by precompaction of DNA with cetyltrimethylammonium bromide, followed by addition of cationic lipids. The higher efficiency of the ternary complexes with respect to their corresponding lipoplexes was related to their internal structure which prevents their dissociation by serum proteins and allows efficient internalization in the target cells.

摘要

背景

控制与非病毒载体复合的DNA的结构和物理化学性质对于有效的生物分布和基因传递至细胞至关重要。阳离子脂质体与DNA相互作用,形成具有转染能力但大且异质的聚集体。另一方面,阳离子去污剂将DNA浓缩成小的均匀但可逆的复合物,其转染效率低。

方法

为了结合两种载体的有利特性,通过将阳离子脂质体添加到由阳离子去污剂浓缩的质粒DNA中来制备三元复合物。通过电子显微镜、准弹性光散射、凝胶电泳和荧光技术研究这些复合物的结构和物理化学性质。然后将这些数据分别与通过荧光素酶基因表达和共聚焦显微镜测定的三元复合物的转染效率和细胞内运输相关联。

结果

发现三元复合物形成小的、均匀的、球状的、稳定的且带正电荷的颗粒,其具有高度致密和堆积的层状内部结构,不同于相应脂质体复合物的多层结构(L(α)(C))。在血清存在下,三元复合物更有效地内化到细胞中,毒性更小,并且转染效率比脂质体复合物高20倍。

结论

本研究表明,通过用十六烷基三甲基溴化铵预压缩DNA,然后添加阳离子脂质,可以获得小的、单分散的和高度稳定的复合物。三元复合物相对于其相应脂质体复合物的更高效率与其内部结构有关,该内部结构防止它们被血清蛋白解离并允许在靶细胞中有效内化。

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