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Efficient Transfection of Large Plasmids Encoding HIV-1 into Human Cells—A High Potential Transfection System Based on a Peptide Mimicking Cationic Lipid

机译:基于肽模拟阳离子脂质的肽的高电位转染系统有效转染大质粒 - 一种高电位转染系统

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摘要

One major disadvantage of nucleic acid delivery systems is the low transfection or transduction efficiency of large-sized plasmids into cells. In this communication, we demonstrate the efficient transfection of a 15.5 kb green fluorescent protein (GFP)-fused HIV-1 molecular clone with a nucleic acid delivery system prepared from the highly potent peptide-mimicking cationic lipid OH4 in a mixture with the phospholipid DOPE (co-lipid). For the transfection, liposomes were loaded using a large-sized plasmid (15.5 kb), which encodes a replication-competent HIV type 1 molecular clone that carries a Gag-internal green fluorescent protein (HIV-1 JR-FL Gag-iGFP). The particle size and charge of the generated nanocarriers with 15.5 kb were compared to those of a standardized 4.7 kb plasmid formulation. Stable, small-sized lipoplexes could be generated independently of the length of the used DNA. The transfer of fluorescently labeled pDNA-HIV1-Gag-iGFP in HEK293T cells was monitored using confocal laser scanning microscopy (cLSM). After efficient plasmid delivery, virus particles were detectable as budding structures on the plasma membrane. Moreover, we observed a randomized distribution of fluorescently labeled lipids over the plasma membrane. Obviously, a significant exchange of lipids between the drug delivery system and the cellular membranes occurs, which hints toward a fusion process. The mechanism of membrane fusion for the internalization of lipid-based drug delivery systems into cells is still a frequently discussed topic.
机译:核酸输送系统的一个主要缺点是大尺寸质粒的低转染或转导效率进入细胞。在这种通信中,我们证明了一种15.5kb绿色荧光蛋白(GFP)-Fused HIV-1分子克隆的有效转染,所述核酸递送系统与用磷脂涂料的混合物中的高效肽模拟阳离子脂质OH4制备(共脂质)。对于转染,使用大尺寸的质粒(15.5kb)加载脂质体,其编码携带胶原内绿色荧光蛋白(HIV-1 JR-FL GAG-IGFP)的复制竞争力的HIV型分子克隆。将产生的纳米载体的粒度和电荷与15.5kb的颗粒尺寸和电荷与标准化的4.7kb质粒制剂的制剂进行比较。可以独立于二手DNA的长度产生稳定的小尺寸脂肪量。使用共聚焦激光扫描显微镜(CLSM)监测HEK293T细胞中荧光标记的PDNA-HIV1-GAG-IGFP的转移。在有效的质粒递送之后,病毒颗粒被检测为血浆膜上的萌芽结构。此外,我们观察到在质膜上的荧光标记的脂质的随机分布。显然,出现药物递送系统和细胞膜之间的脂质交换,暗示朝向融合过程。膜融合的机理用于将脂质的药物递送系统内化为细胞仍然是常见的话题。

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