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Chitosan cushioned air stable single PEGylated phospholipid bilayers

机译:壳聚糖缓冲空气稳定的单聚乙二醇化磷脂双层

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Air stable single lipid bilayers formation through SUVs fusion methods is still a challenge work. Here soluble LMW chitosan chemically coupled to silicon dioxide surface is cushioned for PEGylated lipid bilayers. Using imaging ellipsometry and spectroscopic ellipsometer, the influence of molar fraction of DSPE-PEG_(2000) for lipid bilayers formation and stability is examined. Under the mushroom phase, PEGylated lipid vesicles may aggregate to multiple bilayers; while entering the brush regime of PEG, vesicles can fused into single Upid bilayers. It is demonstrated both the appropriate mole fraction of PEGylaed lipid and hydrophilic polymer cushion are equally critical for achieving air and wash stable single Upid bilayers. Imaging ellipsometry also show the promise as an easy and useful tool for future air stable Upid bilayers based biosensor.
机译:通过SUV融合方法形成空气稳定的单脂质双层仍然是一项艰巨的工作。在这里,化学偶联至二氧化硅表面的可溶性LMW壳聚糖被制成PEG化脂质双层的缓冲层。使用椭偏成像仪和光谱椭偏仪,考察了DSPE-PEG_(2000)的摩尔分数对脂质双层形成和稳定性的影响。在蘑菇期,聚乙二醇化的脂质囊泡可能聚集到多个双层中。当进入PEG的刷涂方案时,囊泡可以融合成单个Upid双层。事实证明,聚乙二醇化脂质的适当摩尔分数和亲水性聚合物垫层对于实现空气和洗涤稳定的单一Upid双层膜同样重要。椭偏成像技术也显示出其作为未来基于空气稳定的Upid双层生物传感器的简便实用工具的前景。

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