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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >In situ microemulsion-gel obtained from bioadhesive hydroxypropyl methylcellulose films for transdermal administration of zidovudine
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In situ microemulsion-gel obtained from bioadhesive hydroxypropyl methylcellulose films for transdermal administration of zidovudine

机译:原位微乳液 - 从生物粘附羟丙基甲基纤维素薄膜获得,用于透皮施用Zidovudine

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摘要

This study aims to develop in situ microemulsion-gel (ME-Gel) obtained from hydroxypropyl methylcellulose (HPMC) films for transdermal administration of Zidovudine (AZT). Firstly, HPMC films containing propylene glycol (PG) and eucalyptus oil (EO) were obtained and characterized. Later, a pseudo-ternary phase diagram composed of water, EO, tween 80 and PG was obtained and one microemulsion (ME) with a similar proportion of the film components was obtained. ME was transformed in ME-Gel by the incorporation of HPMC. Finally, HPMC films were hydrated with Tween 80 solution to yield in situ ME-Gel and its effect on AZT skin permeation was compared with HPMC film hydrated with water (F5(hyd)). The results showed that the ME and ME-Gel presented a droplet size of 16.79 and 122.13 mu m, respectively, polydispersity index (PDI) < 0.39 and pH between 5.10 and 5.40. The incorporation of HPMC resulted in viscosity about 2 times higher than the use of ME. The presence of AZT did not alter the formulation properties. The in situ ME-Gel promoted a two-fold increase in the permeated amount of AZT compared to F5(hyd). The results suggest that it was possible to obtain an ME-Gel in situ from HPMC films and that its effect on transdermal permeation of AZT was significant.
机译:本研究旨在开发原位微乳液 - 凝胶(ME-凝胶),该甲基甲基纤维素(HPMC)薄膜获得,用于透皮施用Zidovudine(AZT)。首先,得到含有丙二醇(PG)和桉树油(EO)的HPMC膜。后来,获得了由水,EO,吐温80和Pg组成的伪三元相图,得到了一种具有类似膜组分的微乳液(ME)。通过加入HPMC,我在ME-GEL中转变。最后,将HPMC薄膜用Tween 80溶液水合,得到原位Me-Gel,并将其对水合肼水合的HPMC膜进行了对AZT皮肤渗透的影响(F5(HY5)。结果表明,ME和ME-凝胶呈现出16.79和122.13μm的液滴尺寸,多分散指数(PDI)<0.39和pH值为5.10和5.40。 HPMC的掺入导致粘度约为2倍,比使用更多。 AZT的存在没有改变配方性质。与F5(HYD)相比,原位ME-GEL促进了渗透量的AZT的两倍增加。结果表明,可以从HPMC膜原位获得ME-凝胶,并且其对AZT透皮渗透的影响是显着的。

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