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Self-Crosslinking Lipopeptide/DNA/PEGylated Particles: A New Platform for DNA Vaccination Designed for Assembly in Aqueous Solution

机译:自交联的脂肽/ DNA /聚乙二醇化颗粒:设计用于在水溶液中组装的DNA疫苗接种的新平台。

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摘要

Delivery of plasmids for gene expression in vivo is an inefficient process that requires improvement and optimization to unlock the clinical potential of DNA vaccines. With ease of manufacture and biocompatibility in mind, we explored condensation of DNA in aqueous solution with a self-crosslinking, endosome-escaping lipopeptide (LP), stearoyl-Cys-His-His-Lys-Lys-Lys-amide (stearoyl-CH2K3), to produce cationic LP/DNA complexes. To test whether poly(ethylene glycol) (PEG)-ylation of these cationic complexes to neutralize the surface charge would improve the distribution, gene expression, and immune responses poly(ethylene glycol), these LP/DNA complexes were combined with 1,2-distearoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)-2000] (DSPE-PEG2000). Fluorescence imaging illustrated that the cationic complexes exhibited the highest degree of localization and lowest degree of dispersion throughout the injected muscle, suggesting impaired mobility of cationic particles upon administration. Nanoluciferase reporter assays over a 90-day period demonstrated that gene expression levels in muscle were highest for PEGylated particles, with over a 200-fold higher level of expression than the cationic particles observed at 30 days. Humoral and cell-mediated immune responses were evaluated in vivo after injection of an ovalbumin expression plasmid. PEGylation improved both immune responses to the DNA complexes in mice. Overall, this suggests that PEGylation of cationic lipopeptide complexes can significantly improve both the transgene expression and immunogenicity of intramuscular DNA vaccines.
机译:体内用于基因表达的质粒传递是一个低效的过程,需要进行改进和优化才能释放DNA疫苗的临床潜力。考虑到易于制造和生物相容性,我们探索了水溶液中DNA与自交联,逃逸内体的脂肽(LP),硬脂酰-Cys-His-His-Lys-Lys-Lys-酰胺(stearoyl-CH2K3 ),生产阳离子LP / DNA复合物。为了测试这些阳离子复合物的聚乙二醇(PEG)-基化作用以中和表面电荷是否会改善聚乙二醇的分布,基因表达和免疫反应,将这些LP / DNA复合物与1,2, -二硬脂酰基-sn-甘油-3-磷酸乙醇胺-N- [甲氧基(聚乙二醇)-2000](DSPE-PEG2000)。荧光成像表明,阳离子配合物在整个注射的肌肉中表现出最高的定位度和最低的分散度,表明给药后阳离子颗粒的迁移性受损。在90天的时间里,纳米荧光素酶报告基因检测表明,聚乙二醇化颗粒在肌肉中的基因表达水平最高,在30天时观察到的表达水平比阳离子颗粒高200倍以上。注射卵清蛋白表达质粒后体内评估体液和细胞介导的免疫反应。聚乙二醇化改善了小鼠对DNA复合物的免疫反应。总的来说,这表明阳离子脂肽复合物的PEG化可以显着改善肌内DNA疫苗的转基因表达和免疫原性。

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