Unité INSERM 1078, IFR 148 ScInBioS, Université de Bretagne Occidentale, Université Européenne de Bretagne, 46 rue Félix Le Dantec, CS51819, 29218 Brest Cedex 02, France.
Biomaterials. 2012 Sep;33(26):6240-53. doi: 10.1016/j.biomaterials.2012.05.014. Epub 2012 Jun 5.
Development of efficient and non-toxic gene delivery systems is among the most challenging requirements for successful gene therapy. Cationic lipophosphoramidates constitute a class of cationic lipids we have already shown to be efficient for in vivo gene transfer. Herein, we report the synthesis of a cationic lipophosphoramidate bearing two phytanyl chains (BSV18) as hydrophobic domain, and studied its gene transfection properties. In vitro, BSV18 exhibited a high transfection efficacy associated with a low cytotoxicity. (31)P NMR studies of various cationic lipophosphoramidates in water solution suggested that the phytanyl chains may favor the formation of an inverted hexagonal phase, a supramolecular arrangement which is presumed to enhance the endosomal escape and consequently increase the transfection efficiency. In vivo, systemic delivery of BSV18-based lipoplexes allowed a high efficiency of gene transfection into the mouse lung. With a view to clinical application, we evaluated not only the efficiency of lung transfection but also the eventual in vivo side-effects. Thus, in addition to monitoring the in vivo transfection efficiency by bioluminescent imaging and identifying by immunohistochemistry the cell types transfected, we also assessed in living animals the potential liver reaction as well as the inflammatory and immune responses induced by BSV18-mediated transfection. All those adverse effects were actually highly transient. Thus, taken together, these results indicate that lipophosphoramidates equipped with two phytanyl chains may have great potential for lung gene therapy, in particular for Cystic Fibrosis.
开发高效无毒的基因传递系统是成功基因治疗的最具挑战性的要求之一。阳离子脂质体膦酰胺构成了一类阳离子脂质体,我们已经证明它们在体内基因转移方面非常有效。本文报道了一种带有两个植烷链(BSV18)作为疏水基团的阳离子脂质体膦酰胺的合成,并研究了其基因转染特性。在体外,BSV18 表现出与低细胞毒性相关的高转染效率。(31)P NMR 研究表明,各种阳离子脂质体膦酰胺在水溶液中可能有利于形成反六方相,这种超分子排列被认为可以增强内涵体逃逸,从而提高转染效率。在体内,基于 BSV18 的脂质体的系统给药允许高效地将基因转染到小鼠肺中。为了临床应用,我们不仅评估了肺转染的效率,还评估了潜在的体内副作用。因此,除了通过生物发光成像监测体内转染效率并通过免疫组织化学鉴定转染的细胞类型外,我们还在活体动物中评估了 BSV18 介导的转染引起的潜在肝脏反应以及炎症和免疫反应。所有这些不良反应实际上都是高度短暂的。因此,总的来说,这些结果表明,带有两个植烷链的脂质体膦酰胺可能具有很大的潜力用于肺部基因治疗,特别是囊性纤维化。