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用于局部给药氟康唑的角质素脂质凝胶和凝胶微乳剂的研制。

The development of Cutina lipogels and gel microemulsion for topical administration of fluconazole.

作者信息

El Laithy H M, El-Shaboury K M F

机构信息

Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Cairo University, Cairo, Egypt.

出版信息

AAPS PharmSciTech. 2002;3(4):E35. doi: 10.1208/pt030435.

Abstract

The influence of the vehicle on the release and permeation of fluconazole, a topical antifungal drug dissolved in Jojoba oil was evaluated. Series of Cutina lipogels (Cutina CPA [cetyl palmitate], CBS [mixture of glyceryl stearate, cetearyl alcohol, cetyl palmitate, and cocoglycerides], MD [glyceryl stearate], and GMS [glyceryl monostearate]) in different concentrations as well as gel microemulsion were prepared. In-vitro drug release in Sorensen's citrate buffer (pH 5.5) and permeation through the excised skin of hairless mice, using a modified Franz diffusion cell, were performed. The rheological behavior and the apparent viscosity values for different gel bases were measured before and after storage under freezing conditions at -4 degrees C and were taken as measures for stability of network structure. Candida albicans was used as a model fungus to evaluate the antifungal activity of the best formula achieved. The results of in vitro drug release and its percutaneous absorption showed that the highest values from gel microemulsion were assured. The rheological behavior of the prepared systems showed pseudoplastic (shear-thinning) flow indicating structural breakdown of the existing intermolecular interactions between polymeric chains. Moreover, the stability study revealed no significant difference between viscosity before and after storage for different formulae except for CPA Cutina lipogel (using analysis of variance [ANOVA] test at level of significance.05). The antifungal activity of fluconazole showed the widest zone of inhibition with gel microemulsion. The gel microemulsion is an excellent vehicle for fluconazole topical drug delivery.

摘要

评估了载体对溶解于荷荷巴油中的局部抗真菌药物氟康唑释放和渗透的影响。制备了不同浓度的一系列角质层脂质凝胶(角质层CPA[棕榈酸十六酯]、CBS[硬脂酸甘油酯、鲸蜡硬脂醇、棕榈酸十六酯和椰油甘油酯的混合物]、MD[硬脂酸甘油酯]和GMS[单硬脂酸甘油酯])以及凝胶微乳。使用改良的Franz扩散池,在索伦森柠檬酸盐缓冲液(pH 5.5)中进行体外药物释放,并通过无毛小鼠的离体皮肤进行渗透实验。在-4℃冷冻条件下储存前后,测量了不同凝胶基质的流变行为和表观粘度值,并将其作为网络结构稳定性的指标。白色念珠菌用作模型真菌,以评估所获得的最佳配方的抗真菌活性。体外药物释放及其经皮吸收的结果表明,凝胶微乳具有最高的值。所制备体系的流变行为显示出假塑性(剪切变稀)流动,表明聚合物链之间现有分子间相互作用的结构破坏。此外,稳定性研究表明,除角质层CPA脂质凝胶外,不同配方储存前后的粘度无显著差异(使用显著性水平为0.05的方差分析[ANOVA]测试)。氟康唑的抗真菌活性在凝胶微乳中表现出最宽的抑菌圈。凝胶微乳是氟康唑局部给药的优良载体。

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