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首页> 外文期刊>AAPS PharmSciTech >Propylene Glycol Liposomes as a Topical Delivery System for Miconazole Nitrate: Comparison with Conventional Liposomes
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Propylene Glycol Liposomes as a Topical Delivery System for Miconazole Nitrate: Comparison with Conventional Liposomes

机译:丙二醇脂质体作为硝酸咪康唑的局部给药系统:与常规脂质体的比较

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摘要

Propylene glycol (PG)-phospholipid vesicles have been advocated as flexible lipid vesicles for enhanced skin delivery of drugs. To further characterize the performance of these vesicles and to address some relevant pharmaceutical issues, miconazole nitrate(MN)-loaded PG nanoliposomes were prepared and characterized for vesicle size, entrapment efficiency, in vitro release, and vesicle stability. An issue of pharmaceutical importance is the time-dependent, dilution-driven diffusion of propylene glycol out of the vesicles. This was addressed by assessing propylene glycol using gas chromatography in the separated vesicles and monitoring its buildup in the medium after repeated dispersion of separated vesicles in fresh medium. Further, the antifungal activity of liposomal formulations under study was assessed using Candida albicans, and their in vitro skin permeation and retention were studied using human skin. At all instances, blank and drug-loaded conventional liposomes were included for comparison. The results provided evidence of controlled MN delivery, constant percent PG uptake in the vesicles (≈45.5%) in the PG concentration range 2.5 to 10%, improved vesicle stability, and enhanced skin deposition of MN with minimum skin permeation. These are key issues for different formulation and performance aspects of propylene glycol-phospholipid vesicles.
机译:丙二醇(PG)-磷脂囊泡已被提倡为增强药物向皮肤输送的柔性脂质囊泡。为了进一步表征这些囊泡的性能并解决一些相关的药学问题,制备了装载硝酸咪康唑(MN)的PG纳米脂质体,并对其囊泡大小,包封效率,体外释放和囊泡稳定性进行了表征。药物重要性的问题是丙二醇从囊泡中随时间变化,稀释驱动的扩散。通过使用气相色谱法在分离的囊泡中评估丙二醇,并在将分离的囊泡重复分散在新鲜培养基中后监测其在培养基中的积累,可以解决此问题。此外,使用白色念珠菌评估了所研究脂质体制剂的抗真菌活性,并使用人皮肤研究了它们的体外皮肤渗透和保留。在所有情况下,均包括空白和载有药物的常规脂质体以进行比较。结果提供了控制的MN传递的证据,在PG浓度范围为2.5至10%的情况下,囊泡中PG的摄取百分比恒定(≈45.5%),改善了囊泡的稳定性,并以最小的皮肤渗透增强了MN的皮肤沉积。这些是丙二醇-磷脂囊泡的不同制剂和性能方面的关键问题。

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