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纳米乳剂经皮给药系统的研制及体外评价。

Development and in vitro evaluation of a nanoemulsion for transcutaneous delivery.

机构信息

College of Pharmacy, Xavier University of Louisiana , New Orleans, LA , USA.

出版信息

Drug Dev Ind Pharm. 2014 Mar;40(3):370-9. doi: 10.3109/03639045.2012.763137. Epub 2013 Apr 19.

Abstract

OBJECTIVE

The purpose of this study is to develop a nanoemulsion formulation for its use as a transcutaneous vaccine delivery system.

MATERIALS AND METHODS

With bovine albumin-fluorescein isothiocyanate conjugate (FITC-BSA) as a vaccine model, formulations were selected with the construction of pseudo-ternary phase diagrams and a short-term stability study. The size of the emulsion droplets was furthered optimized with high-pressure homogenization. The optimized formulation was evaluated for its skin permeation efficiency. In vitro skin permeation studies were conducted with shaved BALB/c mice skin samples with a Franz diffusion cell system. Different drug concentrations were compared, and the effect of the nanoemulsion excipients on the permeation of the FITC-BSA was also studied.

RESULTS

The optimum homogenization regime was determined to be five passes at 20 000 psi, with no evidence of protein degradation during processing. With these conditions, the particle diameter was 85.2 nm ± 15.5 nm with a polydispersity index of 0.186 ± 0.026 and viscosity of 14.6 cP ± 1.2 cP. The optimized formulation proved stable for 1 year at 4 °C. In vitro skin diffusion studies show that the optimized formulation improves the permeation of FITC-BSA through skin with an enhancement ratio of 4.2 compared to a neat control solution. Finally, a comparison of the skin permeation of the nanoemulsion versus only the surfactant excipients resulted in a steady state flux of 23.44 μg/cm(2)/h for the nanoemulsion as opposed to 6.10 μg/cm(2)/h for the emulsifiers.

CONCLUSION

A novel nanoemulsion with optimized physical characteristics and superior skin permeation compared to control solution was manufactured. The formulation proposed in this study has the flexibility for the incorporation of a variety of active ingredients and warrants further development as a transcutaneous vaccine delivery vehicle.

摘要

目的

本研究旨在开发一种纳米乳制剂,用作经皮疫苗传递系统。

材料和方法

以牛血清白蛋白-荧光素异硫氰酸酯结合物(FITC-BSA)为疫苗模型,通过构建伪三元相图和短期稳定性研究选择制剂。通过高压匀质进一步优化乳液液滴的大小。优化后的制剂用于评估其皮肤渗透效率。采用Franz 扩散池系统,对 shaved BALB/c 小鼠皮肤样品进行体外皮肤渗透研究。比较了不同药物浓度,并研究了纳米乳辅料对 FITC-BSA 渗透的影响。

结果

确定的最佳均质条件为 20000psi 下 5 次通过,处理过程中无蛋白质降解的证据。在此条件下,粒径为 85.2nm±15.5nm,多分散指数为 0.186±0.026,粘度为 14.6cP±1.2cP。优化后的制剂在 4°C 下稳定 1 年。体外皮肤扩散研究表明,与对照溶液相比,优化后的制剂可提高 FITC-BSA 通过皮肤的渗透,增强比为 4.2。最后,纳米乳与仅表面活性剂辅料的皮肤渗透比较导致纳米乳的稳态通量为 23.44μg/cm2/h,而乳化剂为 6.10μg/cm2/h。

结论

制造了一种具有优化物理特性和优于对照溶液的皮肤渗透的新型纳米乳。本研究提出的制剂具有纳入各种活性成分的灵活性,作为经皮疫苗传递载体值得进一步开发。

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