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首页> 外文期刊>Journal of Molecular Liquids >Ultra-fine self nanoemulsifying drug delivery system for transdermal delivery of meloxicam: Dependency on the type of surfactants
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Ultra-fine self nanoemulsifying drug delivery system for transdermal delivery of meloxicam: Dependency on the type of surfactants

机译:用于美洛昔康透皮递送的超细自纳米乳化药物递送系统:取决于表面活性剂的类型

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摘要

The aim of this studywas to develop and evaluate ultra-fine selfnanoemulsifying drug delivery system(UF-SNEDDS) of meloxicam (MLX) to enhance its transdermal delivery. The preliminary screening was carried out to select SNEDDS components according to type IV lipid based formulations using surfactant and co-surfactant. The prepared SNEDDS formulations were subjected to different thermodynamic stability tests. The droplet size, polydispersity index (PDI), zeta potential, turbidity, transmission electron microscopy (TEM) and in vitro MLX release studies were investigated. Finally, the influence of UF-SNEDDS on the MLX transdermal delivery was assessed. These UF-SNEDDS showed droplet size range of 14.41±2.50nmto 25.58±2.33nm, PDI less than 0.3, zeta potential with negative charge and turbidity range of 1.92–3.47 NTU. TEM of reconstituted SNEDDS-F5 demonstrated dark smaller droplet with spherical shape. The in vitroMLX release from SNEDDS was found to be higher in comparison to saturated solution (control). An in vitro permeation studywas achieved in rat skin, the permeated amount ofMLX was increased up to 11.89-fold as compared to control. Then, the presence of surfactant and its type can influence on both the drug release and the transdermal delivery of MLX. These results indicated that UF-SNEDDS developed for transdermal delivery may be a promising delivery system for MLX, with high solubility and improved skin permeation.
机译:这项研究的目的是开发和评估美洛昔康(MLX)的超细自纳米乳化药物递送系统(UF-SNEDDS),以增强其透皮递送。进行初步筛选以使用表面活性剂和助表面活性剂根据IV型脂质基制剂选择SNEDDS组分。对制得的SNEDDS配方进行不同的热力学稳定性测试。研究了液滴的大小,多分散指数(PDI),ζ电位,浊度,透射电子显微镜(TEM)和体外MLX释放研究。最后,评估了UF-SNEDDS对MLX透皮递送的影响。这些UF-SNEDDS的液滴尺寸范围为14.41±2.50nm至25.58±2.33nm,PDI小于0.3,ζ电位带负电荷,浊度范围为1.92–3.47 NTU。重构的SNEDDS-F5的TEM显示出呈球形的深色小液滴。发现与饱和溶液(对照)相比,SNEDDS的体外MLX释放更高。在大鼠皮肤中进行了体外渗透研究,与对照相比,MLX的渗透量增加了11.89倍。然后,表面活性剂及其类型的存在会影响MLX的药物释放和透皮递送。这些结果表明开发用于透皮递送的UF-SNEDDS可能是具有高溶解度和改善的皮肤渗透性的有希望的MLX递送系统。

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