School of Pharmaceutical Science, Shandong University, Ji'nan, Shandong Province, People's Republic of China.
Nanotechnology. 2011 Jun 17;22(24):245104. doi: 10.1088/0957-4484/22/24/245104. Epub 2011 May 4.
The clinical success of gene therapy for lung cancer is not only dependent on efficient gene carriers but also on a suitable delivery route. A pulmonary delivery route can directly deliver gene vectors to the lung which is more efficient than a systemic delivery route. For gene carriers, cationic liposomes have recently emerged as leading non-viral vectors in worldwide gene therapy clinical trials. However, cytotoxic effects or apoptosis are often observed which is mostly dependent on the cationic lipid used. Therefore, an efficient and safe cationic lipid, 6-lauroxyhexyl lysinate (LHLN), previously synthesized by our group was first used to prepare cationic liposomes. Physicochemical and biological properties of LHLN-liposomes were investigated. LHLN-liposome/DNA complexes showed positive surface charge, spherical morphology, a relatively narrow particle size distribution and strong DNA binding capability. Compared with Lipofectamine2000, the new cationic liposome formulation using LHLN exhibited not only lower cytotoxicity (P < 0.05) but also similar transfection efficiency in A549 and HepG2 lung cancer cells for in vitro tests. When administered by intratracheal instillation into rat lungs for in vivo evaluation, LHLN-liposome/DNA complexes exhibited higher pulmonary gene transfection efficiency than Lipofectamine2000/DNA complexes (P < 0.05). These results suggested that LHLN-liposomes may have great potential for efficient pulmonary gene delivery.
肺癌基因治疗的临床成功不仅依赖于高效的基因载体,还依赖于合适的给药途径。肺内给药途径可直接将基因载体递送至肺部,其效率高于全身给药途径。在基因载体方面,阳离子脂质体最近已成为全球基因治疗临床试验中的主要非病毒载体。然而,通常观察到细胞毒性作用或细胞凋亡,这主要取决于所用的阳离子脂质。因此,我们小组先前合成的一种高效且安全的阳离子脂质,即 6-月桂酰氧基己基赖氨酸(LHLN),首次被用于制备阳离子脂质体。研究了 LHLN-脂质体的理化和生物学特性。LHLN-脂质体/DNA 复合物表现出正表面电荷、球形形态、相对较窄的粒径分布和强大的 DNA 结合能力。与 Lipofectamine2000 相比,使用 LHLN 的新型阳离子脂质体制剂不仅表现出更低的细胞毒性(P<0.05),而且在体外试验中对 A549 和 HepG2 肺癌细胞的转染效率也相似。当通过气管内滴注给药进入大鼠肺部进行体内评价时,LHLN-脂质体/DNA 复合物在肺部基因转染效率方面优于 Lipofectamine2000/DNA 复合物(P<0.05)。这些结果表明,LHLN-脂质体可能具有高效肺部基因传递的巨大潜力。