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采用全因子设计:设计、配方和优化透皮醇质体及其特性研究。

Design, formulation and optimization of topical ethosomes using full factorial design: and characterization.

机构信息

Pharmaceutical Technology Department, National Research Centre, Cairo, Egypt.

出版信息

J Liposome Res. 2022 Mar;32(1):74-82. doi: 10.1080/08982104.2021.1955925. Epub 2021 Oct 26.

Abstract

The present study aimed to develop lomefloxacin-loaded ethosomal vesicles intended to be applied topically for treating skin infections. Ethosomes were prepared using the cold method. The formulation variables were optimized using 2 factorial design and Design Expert software for analyzing the data statistically and graphically using response surface plots. Phosphatidylcholine (X1) and ethanol (X2) were chosen as the independent variables, while the dependent variables comprised entrapment efficiency (Y1), vesicles size (Y2) and zeta potential (Y3). The optimized ethosomes were subsequently incorporated into Carbopol 940 gel and characterized for rheological behaviour, release, skin permeation and deposition. The permeation and skin deposition studies showed better results compared to drug solutions. In a nutshell, the ethosomal vesicles were found to be a promising carrier demonstrating enhanced topical delivery of lomefloxacin.

摘要

本研究旨在开发载有洛美沙星的醇质体囊泡,拟用于治疗皮肤感染的局部应用。醇质体采用冷法制备。通过 2 因子设计和 Design Expert 软件对制剂变量进行优化,以统计和图形方式使用响应面图分析数据。选择磷脂酰胆碱(X1)和乙醇(X2)作为自变量,而包封效率(Y1)、囊泡大小(Y2)和 zeta 电位(Y3)作为因变量。随后将优化后的醇质体包封入卡波姆 940 凝胶中,并对其流变学行为、释放、皮肤渗透和沉积进行了表征。渗透和皮肤沉积研究显示出优于药物溶液的结果。简而言之,醇质体囊泡被发现是一种有前途的载体,可增强洛美沙星的局部递送。

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