Stebelska Katarzyna, Wyrozumska Paulina, Gubernator Jerzy, Sikorski Aleksander F
Laboratory of Cytobiochemistry, Institute of Biochemistry and Molecular Biology, University of Wrocław, Wrocław, Poland.
Cell Mol Biol Lett. 2007;12(1):39-50. doi: 10.2478/s11658-006-0049-8. Epub 2006 Nov 13.
Cationic liposomes can efficiently carry nucleic acids into mammalian cells. This property is tightly connected with their ability to fuse with negatively charged natural membranes (i.e. the plasma membrane and endosomal membrane). We used FRET to monitor and compare the efficiency of lipid mixing of two liposomal preparations--one of short-chained diC14-amidine and one of long-chained unsaturated DOTAP--with the plasma membrane of HeLa cells. The diC14-amidine liposomes displayed a much higher susceptibility to lipid mixing with the target membranes. They disrupted the membrane integrity of the HeLa cells, as detected using the propidium iodide permeabilization test. Morphological changes were transient and essentially did not affect the viability of the HeLa cells. The diC14-amidine liposomes were much more effective at either inducing lipid mixing or facilitating transfection.
阳离子脂质体能够有效地将核酸导入哺乳动物细胞。这一特性与其与带负电荷的天然膜(即质膜和内体膜)融合的能力紧密相关。我们使用荧光共振能量转移(FRET)来监测和比较两种脂质体制剂(一种是短链二C14-脒脂质体,另一种是长链不饱和DOTAP脂质体)与HeLa细胞质膜的脂质混合效率。二C14-脒脂质体与靶膜脂质混合的敏感性要高得多。如通过碘化丙啶通透试验所检测到的,它们破坏了HeLa细胞的膜完整性。形态学变化是短暂的,基本上不影响HeLa细胞的活力。二C14-脒脂质体在诱导脂质混合或促进转染方面要有效得多。