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Fibrin-Lipoplex System for Controlled Topical Delivery of Multiple Genes

机译:纤维蛋白脂复合物系统可控制多个基因的局部递送。

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Nonviral gene delivery via natural biomacromolecules show great promise as controlled release systems while avoiding the associated drawbacks with viral gene delivery such as immunogenicity and safety issues. Here, a fibrin-lipoplex system for topical delivery of multiple genes is described. In vitro release analysis showed efficient retention of the lipoplexes in the fibrin scaffold. The biomolecular interaction between fibrinogen and liposomes was investigated qualitatively using surface plasmon resonance. The strong binding between the lipoplexes and the fibrinogen component of the scaffold was observed and that could explain the in vitro release profile observed in our studies. Both in vitro and in vivo transfection studies using multiple reporter genes were performed to establish the bioactivity of released lipoplexes. The ability of the lipoplexes to transfect fibroblasts in vitro was shown to be maintained even after extended periods of encapsulation within the scaffold. Furthermore, in a rabbit ear ulcer model, the fibrin-lipoplex system was shown to have significantly higher transfection efficiency for two reporter genes at day 7 when compared to lipoplexes alone, suggesting that this fibrin-lipoplex system is suitable for extended release of lipoplexes for topical gene delivery applications.
机译:通过天然生物大分子进行非病毒基因递送显示出作为控释系统的巨大希望,同时避免了与病毒基因递送相关的缺点,例如免疫原性和安全性问题。在此,描述了用于局部递送多个基因的纤维蛋白-脂质复合物系统。体外释放分析显示脂蛋白在纤维蛋白支架中的有效保留。使用表面等离振子共振定性研究了纤维蛋白原和脂质体之间的生物分子相互作用。观察到脂质复合物和支架的纤维蛋白原组分之间的强结合,这可以解释我们研究中观察到的体外释放曲线。进行了使用多个报告基因的体外和体内转染研究,以建立释放的脂质复合物的生物活性。脂质体在体外转染成纤维细胞的能力显示出即使在支架内长时间包封后仍能保持。此外,在兔耳溃疡模型中,与单独的脂质复合物相比,在第7天,纤维蛋白-脂质复合物系统显示出对两个报告基因的转染效率显着更高,表明该纤维蛋白-脂质复合物系统适用于脂质体的延长释放。局部基因递送应用。

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