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乌地那非微乳的研制及其鼻腔给药的体内外评价。

Development of udenafil-loaded microemulsions for intranasal delivery: in vitro and in vivo evaluations.

机构信息

College of Pharmacy, Seoul National University, Seoul 151-742, Republic of Korea.

出版信息

Int J Pharm. 2012 Feb 28;423(2):153-60. doi: 10.1016/j.ijpharm.2011.12.028. Epub 2011 Dec 23.

DOI:10.1016/j.ijpharm.2011.12.028
PMID:22209996
Abstract

To achieve rapid onset of action and improved bioavailability of udenafil, a microemulsion system was developed for its intranasal delivery. Phase behavior, particle size, transmission electron microscope (TEM) images, and the drug solubilization capacity of the microemulsion were investigated. A single isotropic region was found in pseudo-ternary phase diagrams developed at various ratios with CapMul MCM L8 as an oil, Labrasol as a surfactant, and Transcutol or its mixture with ethanol (1:0.25, v/v) as a cosurfactant. Optimized microemulsion formulations with a mean diameter of 120-154 nm achieved enhanced solubility of udenafil (>10mg/ml) compared with its aqueous solubility (0.02 mg/ml). An in vitro permeation study was performed in human nasal epithelial (HNE) cell monolayers cultured by the air-liquid interface (ALI) method, and the permeated amounts of udenafil increased up to 3.41-fold versus that of pure udenafil. According to the results of an in vivo pharmacokinetic study in rats, intranasal administration of udenafil-loaded microemulsion had a shorter T(max) value (1 min) compared with oral administration and improved bioavailability (85.71%) compared with oral and intranasal (solution) administration. The microemulsion system developed for intranasal administration may be a promising delivery system of udenafil, with a rapid onset of action and improved bioavailability.

摘要

为了实现乌地那非的快速起效和提高生物利用度,开发了一种用于其鼻腔给药的微乳系统。考察了该微乳的相行为、粒径、透射电子显微镜(TEM)图像和药物增溶能力。在不同比例下用 CapMul MCM L8 作为油相、Labrasol 作为表面活性剂、Transcutol 或其与乙醇(1:0.25,v/v)的混合物作为助溶剂,开发的伪三元相图中发现了单一各向同性区域。与乌地那非的水溶液(0.02mg/ml)相比,优化的微乳制剂具有 120-154nm 的平均直径,实现了乌地那非溶解度的提高(>10mg/ml)。通过在空气-液体界面(ALI)培养的人鼻上皮(HNE)细胞单层上进行的体外渗透研究,乌地那非的渗透量增加了 3.41 倍,而纯乌地那非的渗透量增加了 3.41 倍。根据大鼠体内药代动力学研究的结果,与口服给药相比,乌地那非负载微乳的鼻腔给药具有较短的 T(max)值(1 分钟),与口服和鼻腔(溶液)给药相比,生物利用度提高(85.71%)。用于鼻腔给药的微乳系统可能是乌地那非的一种有前途的给药系统,具有快速起效和提高生物利用度。

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