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首页> 外文期刊>Journal of liposome research >Analysis and optimization of the cationic lipid component of a lipid/peptide vector formulation for enhanced transfection in vitro and in vivo.
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Analysis and optimization of the cationic lipid component of a lipid/peptide vector formulation for enhanced transfection in vitro and in vivo.

机译:脂质/肽载体制剂阳离子脂质组分的分析与优化体外和体内增强转染的分析与优化。

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We have previously described a lipopolyplex formulation comprising a mixture of a cationic peptide with an integrin-targeting motif (K16GACRRETAWACG) and Lipofectin, a liposome consisting of DOTMA and DOPE in a 1:1 ratio. The high transfection efficiency of the mixture involved a synergistic interaction between the lipid/peptide components. The aim of this study was to substitute the lipid component of the lipopolyplex to optimize transfection further and to seek information on the structure-activity relationship of the lipids in the lipopolyplex. Symmetrical cationic lipids with diether linkages that varied in alkyl chain length were formulated into liposomes and then incorporated into a lipopolyplex by mixing with an integrin-targeting peptide and plasmid DNA. Luciferase transfections were performed of airway epithelial cells and fibroblasts in vitro and murine lung airways in vivo. The biophysical properties of lipid structures and liposome formulations and their potential effects on bilayer membrane fluidity were determined by differential scanning calorimetry and calcein-release assays. Shortening the alkyl tail from C18 to C16 or C14 enhanced lipopolyplex and lipoplex transfection in vitro but with differing effects. The addition of DOPE enhanced transfection when formulated into liposomes with saturated lipids but was more variable in its effects with unsaturated lipids. A substantial improvement in transfection efficacy was seen in murine lung transfection with unsaturated lipids with 16 carbon alkyl tails. The optimal liposome components of lipopolyplex and lipoplex vary and represent a likely compromise between their differing structural and functional requirements for complex formation and endosomal membrane destabilization.
机译:我们先前已经描述了一种脂质聚合物制剂,其包含阳离子肽的混合物,其与整联蛋白靶向基序(K16GacrretaWacg)和Lipopofectin,脂质体由Dotma和1:1的涂料组成。混合物的高转染效率涉及脂质/肽组分之间的协同相互作用。本研究的目的是将脂多聚合物的脂质组分进一步替代以优化转染,并寻求脂质化合物中脂质的结构 - 活性关系的信息。将烷基链长度变化的脂肪阳离子脂质与烷基链长度变化的对称阳离子脂质被配制成脂质体,然后通过与整联蛋白靶向肽和质粒DNA混合掺入脂多聚合物中。在体内进行气道上皮细胞和成纤维细胞进行荧光素酶转染术。通过差示扫描量热法测定脂质结构和脂质体配方的生物物理性质及其对双层膜流动性的潜在影响。将烷基尾从C18缩短至C16或C14,增强脂多聚合物和体外脂肪量转染,但效果不同。添加掺杂增强的转染时用饱和脂质的脂质体配制成脂质体,但在其与不饱和脂质的作用中更可变。在鼠肺转染的鼠肺转染有大量改善,用不饱和脂质,具有16个碳烷基尾巴。 Lipopolyplex和Lipoplex的最佳脂质体组分在复杂的形成和内体膜稳定化的不同结构和功能要求之间变化并表示可能的折衷。

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