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Preparation and Characterization of Stealth Archaeosomes Based on a Synthetic PEGylated Archaeal Tetraether Lipid

机译:基于合成PEG化古细菌四醚脂质的隐形古细菌的制备和表征

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The present studies were focused on the formation and characterization of sterically stabilized archaeosomes made from a synthetic PEGylated archaeal lipid. In a first step, a synthetic archaeal tetraether bipolar lipid was functionalized with a poly(ethylene glycol), PEG, and (PEG45-Tetraether) with the aim of coating the archaeosome surface with a sterically stabilizing hydrophilic polymer. In a second step, Egg-PC/PEG45-Tetraether (90/10 wt%) archaeosomes were prepared, and their physicochemical characteristics were determined by dynamic light scattering (size, polydispersity), cryo-TEM (morphology), and by high-performance thin layer chromatography (lipid composition), in comparison with standard Egg-PC/PEG45-DSPE formulations. Further, a fluorescent dye, the carboxyfluorescein, was encapsulated into the prepared archaeosomes in order to evaluate the potential of such nanostructures as drug carriers. Release studies have shown that the stability of Egg-PC/PEG45-Tetraether-based archaeosomes is significantly higher at 37∘C than the one of Egg-PC/PEG45-DSPE-based liposomes, as evidenced by the slower release of the dye encapsulated into PEGylated archaeosomes. This enhanced stability could be related to the membrane spanning properties of the archaeal bipolar lipid as already described with natural or synthetic tetraether lipids.
机译:目前的研究集中在由合成的PEG化古细菌脂质制成的空间稳定古细菌的形成和表征。第一步,将合成的古细菌四醚双极性脂质用聚乙二醇,PEG和(PEG45-四醚)官能化,目的是用空间稳定的亲水性聚合物涂覆古细菌表面。第二步,制备了Egg-PC / PEG45-四醚(90/10 wt%)的古细菌,并通过动态光散射(大小,多分散性),冷冻TEM(形态学)和高光谱测定了它们的理化特性。与标准Egg-PC / PEG45-DSPE配方相比,高效薄层色谱(脂质组成)。此外,为了评估这种纳米结构作为药物载体的潜力,将一种荧光染料羧基荧光素封装在制备的古细菌中。释放研究表明,基于蛋-PC / PEG45-四醚的古细菌在37°C时的稳定性显着高于基于蛋-PC / PEG45-DSPE的脂质体之一,这可以通过包封的染料的缓慢释放来证明。聚乙二醇化的古细菌。如已经用天然或合成的四醚脂质所描述的,这种增强的稳定性可能与古双极性脂质的跨膜特性有关。

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