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微乳液与磷脂复合物的组合用于氧化苦参碱的经皮给药。

A combination of a microemulsion and a phospholipid complex for topical delivery of oxymatrine.

机构信息

College of Veterinary Medicine, Northwest A&F University, Yangling, 712100, China.

出版信息

Arch Pharm Res. 2011 Apr;34(4):551-62. doi: 10.1007/s12272-011-0405-8. Epub 2011 May 5.

Abstract

Oxymatrine (OMT), a water-soluble drug, has a very low oral bioavailability because of its low membrane permeability and its biotransformation in the gastrointestinal tract. Formulated as an oxymatrine-phospholipid complex (OMT-PLC) can improve the lipid solubility and effectiveness of OMT. The purpose of this study was to explore the utility of the combination of a microemulsion and an OMT-PLC as a topical delivery vehicle for enhancing the absorption and efficacy of OMT. The solubility of OMT-PLC was determined and phase diagrams of microemulsions were constructed. Various microemulsion formulations were developed and characterized by their physicochemical properties, and their in vitro and in vivo permeability through skin. An optimal microemulsion (ME4), which presented as spherical droplets and consisted of 10.0% OMT-PLC, 8.0% isopropyl myristate, 30.0% Cremophor RH40/polyethylene glycol 400 (1:1) and 52.0% water, was selected. It possessed an average droplet size of 32.4 nm, a low viscosity of 113.7 mPa · s, and a high cloud point of 88°C. Compared to the control solution, ME4 provided better skin permeability in vitro and a higher retention ratio of OMT in skin in vivo. Moreover, ME4 significantly enhanced the antiproliferative activity of OMT on scar fibroblasts. These results indicate that the combination of a microemulsion and a phospholipid complex represents an effective vehicle for topical delivery of OMT.

摘要

氧化苦参碱(OMT)是一种水溶性药物,由于其低膜透过性和在胃肠道中的生物转化,其口服生物利用度非常低。将其制成氧化苦参碱-磷脂复合物(OMT-PLC)可以提高 OMT 的脂溶性和疗效。本研究旨在探讨微乳液与 OMT-PLC 联合作为一种局部递药载体,以增强 OMT 的吸收和疗效的应用。测定了 OMT-PLC 的溶解度,并构建了微乳液的相图。开发了各种微乳液制剂,并通过其理化性质以及体外和体内皮肤透过性进行了表征。选择了一种最佳的微乳液(ME4),其由 10.0% OMT-PLC、8.0%肉豆蔻异丙酯、30.0%吐温 RH40/聚乙二醇 400(1:1)和 52.0%水组成,呈球形液滴。它具有平均粒径为 32.4nm、低粘度为 113.7mPa·s 和高浊点为 88°C 的特点。与对照溶液相比,ME4 提供了更好的体外皮肤透过性和更高的体内 OMT 在皮肤中的保留率。此外,ME4 显著增强了 OMT 对瘢痕成纤维细胞的增殖抑制活性。这些结果表明,微乳液与磷脂复合物的组合代表了一种有效的 OMT 局部递药载体。

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