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首页> 外文期刊>Journal of Pharmacy and Pharmaceutical Sciences >A New Vesicle-loaded Hydrogel System Suitable for Topical Applications: Preparation and Characterization
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A New Vesicle-loaded Hydrogel System Suitable for Topical Applications: Preparation and Characterization

机译:适用于局部应用的新型囊泡载水凝胶系统:制备和表征

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– Purpose. Aim of this research was to prepare and study drug release from a new formulation consisting of non ionic surfactant vesicular structures, niosomes (NSVs), loaded with model molecules calcein (CALC), nile red (NR), ibuprofen (IBU) or caffeine (CAFF), and embedded in a hydrogel matrix. Methods. The system locust bean gum/xanthan (1:1), prepared at 60 °C, was used to entrap the vesicles (Tween 20/cholesterol 1:1), loaded with guest molecules and the release profiles were detected at 32 °C. The hydrogel systems were characterized by means of scanning electron microscopy; niosomes were characterized by means of size and ?-potential measurements. Results. Size measurements showed that a slight increase in vesicle dimensions occurs after inclusion of CALC or CAFF (hydrophilic molecules) in the vesicular structures. ?-potential measurements showed that the inclusion of these molecules did not significantly modify the surface charge of empty vesicles. This was probably related to an almost negligible drug adsorption on the vesicle surface. The release from the niosomes-gel systems of two probes (CALC and NR) showed that the diffusion of CALC through the gel was not affected by the niosome entrapment while for NR, the presence of vesicles was crucial. The release profiles from niosomes-gel systems and from the hydrogel alone of model drugs, CAFF and IBU, showed an appreciable difference between the two drugs: the more hydrophilic CAFF was released much faster than IBU. In all release studies turbidity, dimension and ?-potential analyses indicated that the loaded niosomes were released by the hydrogel matrix without being damaged. Conclusions. The reported in vitro experiments show the capability of the novel formulation to combine the qualities of both chosen single systems, i.e. the niosomes and the polymeric network. The hydrogel shows a protective effect on vesicle integrity and leads to a slow release of the loaded model molecules from the polysaccharidic system. This article is open to POST-PUBLICATION REVIEW. Registered readers (see “For Readers”) may comment by clicking on on the issue’s contents page.
机译:–目的。这项研究的目的是准备和研究由新配方制成的药物释放,该新配方由非离子表面活性剂囊泡结构,脂质体(NSV),模型分子钙黄绿素(CALC),尼罗红(NR),布洛芬(IBU)或咖啡因( CAFF),并嵌入水凝胶基质中。方法。在60°C下制备的刺槐豆胶/黄原胶(1:1)系统用于捕获囊泡(Tween 20 /胆固醇1:1),并载有客体分子,并在32°C下检测到释放曲线。通过扫描电子显微镜对水凝胶体系进行表征。通过大小和β-电势测量来表征脂质体。结果。尺寸测量显示,在囊结构中包含CALC或CAFF(亲水分子)后,囊尺寸会略有增加。 γ-电势测量表明,包含这些分子并没有显着改变空囊泡的表面电荷。这可能与药物在囊泡表面上的吸附几乎可以忽略不计有关。两种探针(CALC和NR)从脂质体-凝胶系统中释放表明,CALC通过凝胶的扩散不受脂质体截留的影响,而对于NR,囊泡的存在至关重要。模型药物CAFF和IBU的脂质体-凝胶系统以及单独的水凝胶的释放曲线表明,两种药物之间存在明显的差异:亲水性更高的CAFF的释放速度比IBU快得多。在所有的释放研究中,浊度,尺寸和β-电势分析表明,负载的脂质体被水凝胶基质释放而没有被破坏。结论。所报道的体外实验表明,该新型制剂具有结合所选的单个系统即脂质体和聚合物网络的质量的能力。水凝胶显示出对囊泡完整性的保护作用,并导致从多糖系统中缓慢释放负载的模型分子。本文对发布后审查开放。已注册的读者(请参阅“针对读者”)可以通过单击问题的内容页面来发表评论。

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