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Evaluation of dextran(ethylene glycol) hydrogel films for giant unilamellar lipid vesicle production and their application for the encapsulation of polymersomes

机译:葡聚糖(乙二醇)水凝胶膜的巨大单层脂质囊泡生产的评价及其在聚合物囊泡封装中的应用

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摘要

Giant Unilamellar Vesicles (GUVs) prepared from phospholipids are becoming popular membrane model systems for use in biophysical studies. The quality, size and yield of GUVs depend on the preparation method used to obtain them. In this study, hydrogels consisting of dextran polymers crosslinked by poly(ethylene glycol) (DexPEG) were used as hydrophilic frameworks for the preparation of vesicle suspensions under physiological ionic strength conditions. A comparative study was conducted using hydrogels with varied physicochemical properties to evaluate their performance for GUV production. The prepared GUVs were quantified by flow cytometry using the Coulter Principle to determine yield and size distribution. We find that hydrogels of lower mechanical strength, increased swellability and decreased lipid interaction favour GUV production, while their resulting size is determined by the surface roughness of the hydrogel film. Moreover, we embedded polymersomes into the crosslinked hydrogel network, creating a DexPEG – polymersomes hybrid film. The re-hydration of lipids on those hybrid substrates led to production of GUVs and the efficient encapsulation of polymersomes in the lumen of GUVs.
机译:由磷脂制备的巨型单层囊泡(GUV)正成为流行的用于生物物理研究的膜模型系统。 GUV的质量,大小和产率取决于用于获得它们的制备方法。在这项研究中,由聚乙二醇(DexPEG)交联的葡聚糖聚合物组成的水凝胶被用作亲水性骨架,用于在生理离子强度条件下制备囊泡悬浮液。使用具有不同理化性质的水凝胶进行了比较研究,以评估其在GUV生产中的性能。使用库尔特原理通过流式细胞仪对制备的GUV进行定量,以确定产量和粒径分布。我们发现较低的机械强度,增加的可溶胀性和减少的脂质相互作用的水凝胶有利于GUV生产,而它们产生的尺寸则取决于水凝胶膜的表面粗糙度。此外,我们将聚合物囊泡嵌入交联的水凝胶网络中,创建了DexPEG –聚合物囊泡杂化膜。脂质在那些杂种底物上的再水化导致了GUV的产生以及聚合物囊泡在GUV内腔中的有效包封。

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