Seguin Johanne, Dhotel Hélène, Kai-Luen René, Bessodes Michel, Mignet Nathalie
Paris Sorbonne Cité, Paris Descartes University, Faculty of Pharmacy, Team Vectors for Targeted Therapy and Molecular Imaging, CNRS UMR 8258, INSERM U1022, 75270 Paris Cedex 06, France.
Cell and Molecular Imaging Platform, CRP2 - UMS 3612 CNRS - US25 Inserm-IRD - Université Paris Descartes Paris Sorbonne Cité, Faculty of Pharmacy, 75270 Paris Cedex 06, France.
Eur J Pharm Biopharm. 2015 Feb;90:63-9. doi: 10.1016/j.ejpb.2014.11.001. Epub 2014 Nov 21.
Non viral gene transfection has been mostly reached via cationic polymer and lipid, required for DNA complexation and cell internalisation. However, cationic charges often induce cytotoxicity and limit the efficacy of the lipoplexes in vivo due to their fast elimination from the blood stream. Few years ago, we had developed noncationic lipid interacting with DNA via hydrogen bond interactions. To take advantage of both the internalisation efficacy of cationic complexes and the higher DNA release efficacy of non cationic lipids, we chose to mix both ionic and hydrogen bond interactions within one lipoplex. The idea behind this strategy would be to reduce the overall charge while maintaining a high level of transfection. Four mixed formulations of cationic lipid and thiourea lipid were prepared. We found that decreasing ionic interactions and increasing hydrogen bond interactions improved cationic lipoplexes properties. Indeed, we showed that replacement of net positive charges by hydrogen bond interactions with DNA phosphates led to efficient lipoplexes for in vitro DNA transfection at lower cationic charge content, which consequently reduced lipoplex cytotoxicity.
非病毒基因转染大多通过阳离子聚合物和脂质实现,这是DNA复合和细胞内化所必需的。然而,阳离子电荷常常会诱导细胞毒性,并且由于其从血流中快速清除,会限制体内脂质体复合物的功效。几年前,我们开发了通过氢键相互作用与DNA相互作用的非阳离子脂质。为了利用阳离子复合物的内化功效和非阳离子脂质更高的DNA释放功效,我们选择在一个脂质体复合物中混合离子相互作用和氢键相互作用。该策略背后的想法是在保持高转染水平的同时降低总电荷。制备了四种阳离子脂质和硫脲脂质的混合制剂。我们发现减少离子相互作用并增加氢键相互作用可改善阳离子脂质体复合物的性质。事实上,我们表明,用与DNA磷酸基团的氢键相互作用取代净正电荷,可在较低阳离子电荷含量下产生用于体外DNA转染的高效脂质体复合物,从而降低脂质体复合物的细胞毒性。