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Lipid coating on polyelectrolyte surface modified colloidal particles and polyelectrolyte capsules

机译:聚电解质表面改性的胶体颗粒和聚电解质胶囊上的脂质涂层

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Dipalmitoyldiphosphatidic acid (DPPA), dipalmitoyldiphosphatidylcholine (DPPC), and sphingosine were adsorbed onto polyelectrolyte coated colloids and capsules forming composite lipid-polyelectrolyte layers. The stepwise coating was performed either by adsorption of preformed vesicles onto the capsule surface or by a solvent exchange protocol. The lipid assembly was monitored by zeta-potential measurements. Single particle light scattering, flow cytometry, and fluorescence studies of Forster energy transfer have been used to quantify the lipid coating. Confocal microscopy images of capsules coated with fluorescent lipids demonstrated a homogeneous coverage of the capsule surface. Differential scanning calorimetry shows a phase transition temperature characteristic for lipid layer structures. It was concluded that the adsorbed DPPA form bilayers while DPPC may form multilayers. It was further shown that on top of the lipid layers further polyelectrolyte layers could be assembled. The permeability of B-carboxyfluorescein (6-CF) through the composite layer structure was studied by means of confocal laser scanning microscopy. The permeation time through the composite layer was of the order of 10(1)-10(2) min, while in the absence of lipids 6-CF equilibrated faster than the time resolution of the technique. [References: 29]
机译:将二棕榈酰二磷脂酸(DPPA),二棕榈酰二磷脂酰胆碱(DPPC)和鞘氨醇吸附到涂有聚电解质的胶体和胶囊上,形成复合脂质-聚电解质层。通过将预先形成的囊泡吸附到胶囊表面上或通过溶剂交换方案来进行逐步涂覆。通过ζ电位测量监测脂质组装。 Forster能量转移的单粒子光散射,流式细胞术和荧光研究已用于定量脂质涂层。涂有荧光脂质的胶囊的共聚焦显微镜图像显示了胶囊表面的均匀覆盖。差示扫描量热法显示脂质层结构的相变温度特征。结论是,吸附的DPPA形成双层,而DPPC可形成多层。进一步表明,在脂质层的顶部,可以组装另外的聚电解质层。通过共聚焦激光扫描显微镜研究了B-羧基荧光素(6-CF)通过复合层结构的渗透性。通过复合层的渗透时间约为10(1)-10(2)分钟,而在没有脂质的情况下,6-CF的平衡速度要比该技术的时间分辨率快。 [参考:29]

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