CBMN UMR-CNRS 5248, Université Bordeaux, ENITAB, IECB, Avenue des Facultés, F-33405 Talence, France.
Nucleic Acids Res. 2011 Mar;39(4):1595-609. doi: 10.1093/nar/gkq921. Epub 2010 Nov 15.
Cationic lipids are used for delivering nucleic acids (lipoplexes) into cells for both therapeutic and biological applications. A better understanding of the identified key-steps, including endocytosis, endosomal escape and nuclear delivery is required for further developments to improve their efficacy. Here, we developed a labelling protocol using aminated nanoparticles as markers for plasmid DNA to examine the intracellular route of lipoplexes in cell lines using transmission electron microscopy. Morphological changes of lipoplexes, membrane reorganizations and endosomal membrane ruptures were observed allowing the understanding of the lipoplex mechanism until the endosomal escape mediated by cationic lipids. The study carried out on two cationic lipids, bis(guanidinium)-tris(2-aminoethyl)amine-cholesterol (BGTC) and dioleyl succinyl paramomycin (DOSP), showed two pathways of endosomal escape that could explain their different transfection efficiencies. For BGTC, a partial or complete dissociation of DNA from cationic lipids occurred before endosomal escape while for DOSP, lipoplexes remained visible within ruptured vesicles suggesting a more direct pathway for DNA release and endosome escape. In addition, the formation of new multilamellar lipid assemblies was noted, which could result from the interaction between cationic lipids and cellular compounds. These results provide new insights into DNA transfer pathways and possible implications of cationic lipids in lipid metabolism.
阳离子脂质体被用于将核酸(脂质体)递送至细胞内,用于治疗和生物学应用。为了进一步开发以提高其功效,需要更好地了解已确定的关键步骤,包括内吞作用、内涵体逃逸和核内体转运。在这里,我们开发了一种使用氨基化纳米颗粒作为质粒 DNA 标记物的标记方案,使用透射电子显微镜研究细胞系中脂质体的细胞内途径。观察到脂质体的形态变化、膜重排和内涵体膜破裂,从而理解了阳离子脂质介导的内涵体逃逸之前的脂质体机制。对两种阳离子脂质体双(胍基)-三(2-氨基乙基)胺-胆固醇(BGTC)和二油酰琥珀酰基-巴龙霉素(DOSP)的研究表明,存在两种内涵体逃逸途径,这可以解释它们不同的转染效率。对于 BGTC,在内涵体逃逸之前,DNA 从阳离子脂质体部分或完全解离,而对于 DOSP,脂质体仍在破裂的囊泡内可见,这表明 DNA 释放和内涵体逃逸的途径更为直接。此外,还注意到新的多层脂质组装的形成,这可能是阳离子脂质与细胞化合物相互作用的结果。这些结果为 DNA 转移途径提供了新的见解,并可能对阳离子脂质在脂质代谢中的作用产生影响。