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A Novel Topical Targeting System of Caffeine Microemulsion for Inhibiting UVB-Induced Skin Tumor: Characterization Optimization and Evaluation

机译:咖啡因微乳液抑制UVB诱导的皮肤肿瘤的新型主题靶向系统:表征优化和评估。

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摘要

The purpose of the present study was to develop an optimal microemulsion (ME) formulation as topical nanocarrier of caffeine (CAF) to enhance CAF skin retention and subsequently improve its therapeutic effect on UVB-induced skin carcinogenesis. The pseudo-ternary phase diagram was developed composing of Labrafil M 1944 CS as oil phase, Cremophor EL as surfactant, tetraglycol as cosurfactant, and water. Four ME formulations at water content of 50, 60, 70, and 80% were prepared along the water dilution line of oil to surfactant ratio of 1:3 and characterized in terms of morphology, droplet size, and electric conductivity. A gel at the same drug loads (1%, w/w) was used as control. Ex vivo skin permeation studies were conducted for ME optimization. The optimized formulation (ME4) was composed of 5% (w/w) Labrafil M 1944 CS, 15% (w/w) Smix (2/1, Cremophor EL and tetraglycol), and 80% (w/w) aqueous phase. The skin location amount of CAF from ME4 was nearly 3-fold higher than control (P < 0.05) with improved permeated amount through the skin. The skin targeting localization of hydrophilic substance from ME4 was further visualized through fluorescent-labeled ME by a confocal laser scanning microscope. In pharmacodynamics studies, CAF-loaded ME4 was superior in terms of increasing apoptotic sunburn cells (P < 0.05) as compared with control. Overall results suggested that the ME4 might be a promising vehicle for the topical delivery of CAF.
机译:本研究的目的是开发一种最佳的微乳液(ME)制剂,作为咖啡因(CAF)的局部纳米载体,以增强CAF的皮肤保留能力,并随后改善其对UVB诱导的皮肤癌变的治疗作用。拟三元相图由Labrafil M 1944 CS作为油相,Cremophor EL作为表面活性剂,四甘醇作为辅助表面活性剂和水组成。沿着油与表面活性剂之比为1:3的水稀释线制备了水含量分别为50%,60%,70%和80%的四种ME配方,并根据形态,液滴大小和电导率进行了表征。使用相同载药量(1%,w / w)的凝胶作为对照。进行离体皮肤渗透研究以优化ME。优化的配方(ME4)由5%(w / w)Labrafil M 1944 CS,15%(w / w)Smix(2/1,Cremophor EL和四甘醇)和80%(w / w)水相组成。来自ME4的CAF的皮肤定位量比对照高近3倍(P <0.05),并且渗透量增加。通过共聚焦激光扫描显微镜通过荧光标记的ME,可以进一步观察到来自ME4的亲水性物质对皮肤的定位。在药效学研究中,与对照组相比,加载CAF的ME4在增加凋亡的晒伤细胞方面具有优势(P <0.05)。总体结果表明,ME4可能是CAF局部给药的有前途的载体。

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