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The influence of the polar head-group of synthetic cationic lipids on the transfection efficiency mediated by niosomes in rat retina and brain

机译:合成阳离子脂质的极性头基对脂质体介导的大鼠视网膜和脑中转染效率的影响

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摘要

The development of novel non-viral delivery vehicles is essential in the search of more efficient strategies for retina and brain diseases. Herein, optimized niosome formulations prepared by oil-in water (o/w) and film-hydration techniques were characterized in terms of size, PDI, zeta potential, morphology and stability. Three ionizable glycerol-based cationic lipids containing a primary amine group (lipid 1), a triglycine group (lipid 2) and a dimethylamino ethyl pendent group (lipid 3) as polar head-groups were part of such niosomes. Upon the addition of pCMS-EGFP plasmid, nioplexes were obtained at different cationic lipid/DNA ratios (w/w). The resultant nioplexes were further physicochemically characterized and evaluated to condense, release and protect the DNA against enzymatic digestion. In vitro experiments were performed to evaluate transfection efficiency and cell viability in HEK-293, ARPE-19 and PECC cells. Interestingly, niosome formulations based on lipid 3 showed better transfection efficiencies in ARPE-19 and PECC cells than the rest of cationic lipids showed in this study. In vivo experiments in rat retina after intravitreal and subretinal injections together with in rat brain after cerebral cortex administration showed promising transfection efficiencies when niosome formulations based on lipid 3 were used. These results provide new insights for the development of non-viral vectors based on cationic lipids and their applications for efficient delivery of genetic material to the retina and brain. © 2015 Elsevier Ltd.
机译:在寻找更有效的视网膜和脑疾病治疗策略中,新型非病毒载体的开发至关重要。本文中,通过大小,PDI,ζ电势,形态和稳定性表征了通过水包油(o / w)和膜水化技术制备的优化的脂质体制剂。包含伯胺基团(脂质1),三甘氨酸基团(脂质2)和二甲基氨基乙基侧基(脂质3)作为极性头基的三种可电离的基于甘油的阳离子脂质是此类脂质体的一部分。加入pCMS-EGFP质粒后,以不同的阳离子脂质/ DNA比率(w / w)获得了复合物。进一步对所得的复合物进行物理化学表征,并评估其缩合,释放和保护DNA免受酶消化。进行体外实验以评估HEK-293,ARPE-19和PEC细胞中的转染效率和细胞活力。有趣的是,基于脂质3的脂质体制剂在ARPE-19和PECC细胞中显示出比本研究中其余阳离子脂质更高的转染效率。玻璃体内和视网膜下注射后大鼠视网膜的体内实验,以及大脑皮层给药后的大鼠脑内实验显示,当使用基于脂质3的脂质体制剂时,转染效率很有希望。这些结果为基于阳离子脂质的非病毒载体的开发及其将遗传物质有效递送至视网膜和大脑的应用提供了新的见解。 ©2015爱思唯尔有限公司。

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