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引用本文:梁震野,杨建苗,杜立峰,许东航,魏晓红.肉桂提取物醇质体凝胶经皮给药研究[J].中国现代应用药学,2013,30(11):1202-1206.
LIANG Zhenye,YANG Jianmiao,DU Lifeng,XU Donghang ,WEI Xiaohong.Study on Percutaneous Permeation of Ethosomes Gel of Cinnamon Extract[J].Chin J Mod Appl Pharm(中国现代应用药学),2013,30(11):1202-1206.
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肉桂提取物醇质体凝胶经皮给药研究
梁震野1, 杨建苗2, 杜立峰1, 许东航3, 魏晓红4
1.台州市第一人民医院,浙江 台州 318020;2.浙江省台州医院,浙江 台州 317000;3.浙江大学医学院附属第二医院,杭州 310009;4.杭州师范大学,杭州 310036
摘要:
目的 制备肉桂提取物醇质体凝胶,考察肉桂提取物醇质体凝胶的透皮速率影响因素。方法 采用注入法制备肉桂提取物醇质体,将醇质体与羟丙基甲基纤维素(HPMC)凝胶混合制备肉桂提取物凝胶,采用♂SD大鼠皮肤和Franz单室扩散池作体外经皮研究,HPLC测定不同时间点接受池的肉桂酸含量,考察不同HPMC浓度、不同促渗剂和促渗剂浓度对肉桂提取物醇质体凝胶渗透速率的影响。结果 不同HPMC浓度作为肉桂提取物醇质体基质时经皮渗透速率:2%HPMC>3%HPMC>4%HPMC>5%HPMC≈醇质体。2%氮酮-丙二醇(1∶1)处理显示最好的促渗效果,渗透速率与醇质体相比:(4.38±0.47)μg·h-1·cm-2 vs (1.53±0.31)μg·h-1·cm-2结论 2%HPMC制备的肉桂提取物醇质体凝胶,能提高肉桂透皮速率,醇质体凝胶有望开发为肉桂提取物经皮给药剂型。
关键词:  肉桂提取物  经皮给药  醇质体  凝胶  促渗剂
DOI:
分类号:R
基金项目:浙江省中医药管理局资助项目(2005C084)
Study on Percutaneous Permeation of Ethosomes Gel of Cinnamon Extract
LIANG Zhenye1, YANG Jianmiao2, DU Lifeng1, XU Donghang 3, WEI Xiaohong4
1.Taizhou First People’s Hospital, Taizhou 318020, China;2.Zhejiang Taizhou Hospital, Taizhou 317000, China;3.Second Affiliated Hospital, College of Medicine, Zhejiang University, Hangzhou 310009, China;4.Hangzhou Normal University, Hangzhou 310036, China
Abstract:
OBJECTIVE To investigate the effect of HPMC on the penetration rate of Cinnamon Cortex extract and the synergistic effect of cinnamon cortex extract ethosome gel and the chemical enhancers on enhancement of Cinnamon Cortex extract permeation. METHODS Cinnamon Cortex extract ethosomes gel was prepared by injection method and admixed with HPMC gel. With the skin of SD male rats, the penetration experiments in vitro were performed on modified Franz diffusion cells. The amount of penetrated cinnamon cortex extract was determined by HPLC. The steady penetration rate was calculated. RESULTS The penetration rate shows 2%HPMC>3%HPMC>4%HPMC>5%HPMC≈ethosome. 2% Azone-propanediol(1∶1) pretreated in ethosomal form dramatically enhanced the skin permeation of Cinnamon Cortex extract in vitro compared with ethosomes[(4.38±0.47)μg·h-1·cm-2 vs (1.53±0.31)μg·h-1·cm-2]. CONCLUSION Ethosome gel could be developed as the new dosage form in cinnamon cortex extract transdermal delivery.
Key words:  oleum cinnamomi  transdermal  ethosomes  gel  penetration enhancers
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