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Characterization of PAH/DPPG layer-by-layer films by VUV spectroscopy

机译:用VUV光谱表征PAH / DPPG层状膜

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摘要

The spectroscopic characterization of layer-by-layer (LbL) films containing liposomes is essential not only for determining the precise film architecture but also to guide the design of drug delivery systems. In this study we provide the first report of vacuum ultraviolet spectroscopy (VUV) characterization of LbL films made with liposomes from 1.2-dipalmitoyl-sn-Glycero-3-[Phospho-rac-(1-glycerol)] (Sodium Salt) (DPPG) alternated with poly(allylamine hydrochloride) (PAH). Measurements in the 6.0–9.5 eV range allowed us to identify the electronic transitions responsible for the spectra, which were assigned to carboxyl, hydroxyl and phosphate groups in DPPG while the PAH spectra were governed by electronic transitions in the amino groups. The surface mass density of the LbL films could be determined, from which the formation of a DPPG bilayer was inferred. This rupture of the liposomes into bilayers was confirmed with atomic force microscopy measurements. In subsidiary experiments we ensured that the UV irradiation in vacuum had negligible damage in the DPPG liposomes during the course of the VUV measurements. In addition to demonstrating the usefulness of VUV spectroscopy, the results presented here may be exploited in biological applications of liposome-containing films.
机译:包含脂质体的逐层(LbL)膜的光谱表征不仅对于确定精确的膜结构至关重要,而且对指导药物输送系统的设计至关重要。在这项研究中,我们提供了用1.2-二棕榈酰-sn-甘油3- [磷酸-rac-(1-甘油)](钠盐)(DPPG)脂质体制成的LbL膜的真空紫外光谱(VUV)表征的首次报道。 )与聚烯丙胺盐酸盐(PAH)交替使用。在6.0–9.5 eV范围内的测量使我们能够确定负责光谱的电子跃迁,这些跃迁被分配给DPPG中的羧基,羟基和磷酸酯基团,而PAH光谱则受氨基中的电子跃迁控制。可以确定LbL膜的表面质量密度,由此可以推断出DPPG双层的形成。通过原子力显微镜测量证实脂质体破裂成双层。在辅助实验中,我们确保在VUV测量过程中,真空中的UV辐射对DPPG脂质体的损害可忽略不计。除了证明VUV光谱的有用性外,此处介绍的结果还可用于含脂质体薄膜的生物学应用。

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