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Layer-by-layer films containing emodin or emodin encapsulated in liposomes for transdermal applications

机译:含有聚光素或大黄素的层逐层薄膜,其包封在脂质体中用于透皮应用

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Dermal drug release systems are an important area of research because they can be applied to the skin in a non-invasive procedure using a lower concentration of drugs. In this study, we have developed two types of Layer-by-Layer (LbL) films for releasing emodin (EM). In one system, EM was intercalated with poly(ethylenimine) PEI and poly(vinyl sufonate) (PVS) polyelectrolytes, forming (PEI/PVS)(2)(PEI/EM)(7); in another, EM was incorporated in liposomes obtained by mixing dipalmitoyl phosphatidyl glycerol (DPPG) and palmitoyl oleoyl phosphatidyl glycerol (POPG) lipids, forming (PEI/PVS)(2)(PEI/DPPG-POPG-EM)(7). UV vis and FTIR spectroscopies were used to characterize the LbL films. These showed that the depositions of material by LbL were efficient, with increases in the absorbance of each bilayer evidencing the presence of EM in the film. The (PEI/PVS)(2)(PEI/EM)(7) and (PEI/PVS)(2)(PEI/DPPG-POPG-EM)(7) films released EM in three and five days, respectively. The cyclic voltammetry (CV) assay of the (PEI/PVS)(2)(PEI/EM)(7) results are in agreement with UV vis measurements, which suggest that EM was protonated in acid environments, while the CV of (PEI/PVS)(2)(PEI/DPPG-POPG-EM)(7) demonstrated distinct protonation behaviour for EM within the inner liposome structure, even in acid solutions. Therefore, this study presents two systems based on LbL films and provides additional details about the release of EM from these films to create a viable alternative for transdermal applications. (C) 2017 Elsevier B.V. All rights reserved.
机译:皮肤释放系统是一种重要的研究领域,因为它们可以使用较低的药物浓度在非侵入性手术中施加到皮肤上。在这项研究中,我们开发了两种类型的逐层(LBL)膜,用于释放大蛋白(EM)。在一个系统中,EM用聚(乙基亚胺)PEI和聚(乙烯基)(PVS)聚电解质,形成(PEI / PVS)(2)(PEI / EM)(7)中的聚(PEI / PVS)(7);在另一个中,将EM掺入通过混合二硫代磷脂酰甘油(DPPG)和棕榈酰油酰磷脂酰甘油(POPG)脂质,形成(PEI / PVS)(2)(PEI / DPPG-POPG-EM)(7)中获得的脂质体。 UV VI和FTIR光谱用于表征LBL薄膜。这些表明,通过LBL的材料沉积是有效的,随着每个双层的吸光度,每个双层都在薄膜中的存在。 (PEI / PVS)(2)(PEI / EM)(7)和(PEI / PVS)(2)(PEI / DPPG-POPG-EM)(PEI / DPPG-POPG-EM)(7)薄膜分别在三个和五天内释放EM。 (PEI / PVS)(2)(2)(PEI / EM)(7)结果的循环伏安法(CV)测定与UV VIS测量一致,表明EM在酸环境中质子化,而CV(PEI / PVS)(2)(PEI / DPPG-POPG-EM)(7)甚至在内脂质体结构内显示出不同的质子化行为,即使在酸溶液中也是如此。因此,本研究呈现了基于LBL薄膜的两个系统,并提供有关来自这些薄膜的释放的额外细节,以为透皮应用产生可行的替代方案。 (c)2017 Elsevier B.v.保留所有权利。

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