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基于合成阳离子脂质的基因传递脂质体:极性头部基团对HEK-293、ARPE-19和MSC-D1细胞转染效率的影响。

Niosomes based on synthetic cationic lipids for gene delivery: the influence of polar head-groups on the transfection efficiency in HEK-293, ARPE-19 and MSC-D1 cells.

作者信息

Ojeda E, Puras G, Agirre M, Zárate J, Grijalvo S, Pons R, Eritja R, Martinez-Navarrete G, Soto-Sanchez C, Fernández E, Pedraz J L

机构信息

NanoBioCel Group, University of Basque Country, Vitoria, Spain.

出版信息

Org Biomol Chem. 2015 Jan 28;13(4):1068-81. doi: 10.1039/c4ob02087a. Epub 2014 Nov 21.

Abstract

We designed niosomes based on three lipids that differed only in the polar-head group to analyze their influence on the transfection efficiency. These lipids were characterized by small-angle X-ray scattering before being incorporated into the niosomes which were characterized in terms of pKa, size, zeta potential, morphology and physical stability. Nioplexes were obtained upon the addition of a plasmid. Different ratios (w/w) were selected to analyze the influence of this parameter on size, charge and the ability to condense, release and protect the DNA. In vitro transfection experiments were performed in HEK-293, ARPE-19 and MSC-D1 cells. Our results show that the chemical composition of the cationic head-group clearly affects the physicochemical parameters of the niosomes and especially the transfection efficiency. Only niosomes based on cationic lipids with a dimethyl amino head group (lipid 3) showed a transfection capacity when compared with their counterparts amino (lipid 1) and tripeptide head-groups (lipid 2). Regarding cell viability, we clearly observed that nioplexes based on the cationic lipid 3 had a more deleterious effect than their counterparts, especially in ARPE-19 cells at 20/1 and 30/1 ratios. Similar studies could be extended to other series of cationic lipids in order to progress in the research on safe and efficient non-viral vectors for gene delivery purposes.

摘要

我们基于三种仅极性头部基团不同的脂质设计了脂质体,以分析它们对转染效率的影响。这些脂质在被并入脂质体之前通过小角X射线散射进行了表征,而脂质体则根据pKa、大小、zeta电位、形态和物理稳定性进行了表征。加入质粒后获得了纳米复合物。选择不同的比例(w/w)来分析该参数对大小、电荷以及凝聚、释放和保护DNA能力的影响。在HEK-293、ARPE-19和MSC-D1细胞中进行了体外转染实验。我们的结果表明,阳离子头部基团的化学组成明显影响脂质体的物理化学参数,尤其是转染效率。与具有氨基(脂质1)和三肽头部基团(脂质2)的脂质体相比,只有基于带有二甲基氨基头部基团的阳离子脂质(脂质3)的脂质体显示出转染能力。关于细胞活力,我们清楚地观察到,基于阳离子脂质3的纳米复合物比其对应物具有更有害的影响,特别是在20/1和30/1比例下的ARPE-19细胞中。类似的研究可以扩展到其他系列的阳离子脂质,以便在用于基因递送目的的安全和高效非病毒载体的研究方面取得进展。

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