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Solubility of triacylglycerols or stearylamine in phospholipid vesicles

机译:三酰基甘油或硬脂胺在磷脂囊泡中的溶解度

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The solubilities of two types of lipids, triglycerides (TG), weakly polar compounds, and stearylamine (SA), a polar molecule, within phospholipid bilayers of vesicles are examined by time-resolved selective solubilisation and compared. Both TG and SA were added to phosphatidylcholine (Lipoid E80, PL) vesicles at different concentrations ranging from 0 to 20% (weight per weight of PL). TG insertion in lipid bilayers is a known phenomenon, which develops up to a limit of solubility beyond which emulsion droplets coexist with liposomes. The characterisation of the various colloids formed is obtained by selective solubilisation of the aggregates resulting from continuous detergent addition (Triton X-100). Turbidity monitoring allowed this identification thanks to the well-known vesicle-to-micelle transition process. The low TG concentration only slightly modifies the solubilisation profiles with low turbidity values at the solubilisation completion corresponding to mixed-micelle formation. In contrast, the high TG concentration results in high residual turbidity values interpreted as the coexistence of mixed micelles and emulsion droplets. The amount of detergent used to reach solubilisation completion is proportional to both PL and TG concentrations. The process is dramatically different with SA, although high turbidity values are also observed at solubilisation completion. Indeed, when the SA proportion increases in the vesicles, the amount of detergent necessary to solubilise the vesicles is reduced. So, depending on the type and polarity of molecules added to conventional PL vesicles, the solubilisation can be delayed (TG) or promoted (SA).
机译:通过时间分辨的选择性溶解,通过时间分辨的选择性溶解来检查两种类型的脂质,甘油三酯(Tg),弱极化化合物(Tg),弱极化化合物和硬脂酰胺(Sa),极性分子的溶解质。以0至20%(每重量的PL)的不同浓度,将Tg和Sa添加到磷脂酰胆碱(Lipoid E80,PL)囊泡中加入磷脂酰胆碱(Lipoid E80,PL)囊泡中。在脂质双层中的Tg插入是一种已知的现象,其显影到溶解度之外,乳液液滴与脂质体共存的溶解度。形成的各种胶体的表征是通过选择由连续洗涤剂加成(Triton X-100)得到的聚集体的选择性溶解来获得。由于众所周知的囊泡到胶束过渡过程,浊度监测允许此识别。低Tg浓度仅在对应于混合胶束形成的溶解完成时微小地改变溶解的溶解曲线,其溶解性完成。相反,高Tg浓度导致高残留的浊度值被解释为混合胶束和乳液液滴的共存。用于达到溶解完成的洗涤剂的量与PL和TG浓度成比例。然而,该方法与SA显着不同,尽管在溶解完成时也观察到高浊度值。实际上,当囊泡中的SA比例增加时,减少了囊泡所需的洗涤剂的量。因此,取决于添加到常规PL囊泡的分子的类型和极性,溶解可以延迟(Tg)或促进(SA)。

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