谭杉杉1,2,梁蓉1,2,杨成1,2.负载甘草次酸微乳的制备及表征[J].中国油脂,2026,52(2):.[TAN Shanshan1,2,LIANG Rong1,2,YANG Cheng1,2.Preparation and characterization of microemulsions loaded with glycyrrhetinic acid[J].China Oils and Fats,2026,52(2):.]
负载甘草次酸微乳的制备及表征
Preparation and characterization of microemulsions loaded with glycyrrhetinic acid
投稿时间:2024-12-23  修订日期:2025-08-11  录用日期:2025-01-21   出版日期:2026-02-20
DOI:10.19902/j.cnki.zgyz.1003-7969.240716
中文关键词:  甘草次酸  香芹酚  微乳  经皮渗透  抗氧化性
英文关键词:glycyrrhetinic acid  carvacrol  microemulsion  transdermal permeation  antioxidation
基金项目:国家重点研发计划项目(2016YFD0400801)
作者单位
谭杉杉1,2,梁蓉1,2,杨成1,2 1.江南大学 化学与材料工程学院,江苏 无锡 214122 2.江南大学 合成与生物胶体教育部重点实验室,江苏 无锡 214122 
Author NameAffiliation
TAN Shanshan1,2,LIANG Rong1,2,YANG Cheng1,2 1.School of Chemical & Material Engineering, Jiangnan University, Wuxi 214122, Jiangsu, China
2. Key Laboratory of Synthetic and Biological Colloids of Ministry of Education, Jiangnan University, Wuxi 214122, Jiangsu, China 
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中文摘要:
      为了提高甘草次酸(Glycyrrhetinic acid, GA)在水中的溶解度,促进其经皮吸收,使用加水法制备了甘草次酸微乳(GA microemulsion, GA-ME)。通过测定GA在各辅料中的溶解度,确定了助表面活性剂,采用单因素实验对微乳的主要成分及制备条件进行初步筛选,再利用Box-Behnken响应面法优化配方,并对GA-ME的储藏稳定性、透皮性能、抗氧化性能进行了表征。结果表明:确定二乙二醇单乙醚为助表面活性剂,最优的配方为辛酸/癸酸甘油三酯(Caprylic/capric triglyceride, GTCC)4%、香芹酚2%、Cremophor RH40 14.4%、二乙二醇单乙醚9.6%、水70%,在此配方下制备的微乳GA载量为(2.60±0.05) mg/mL,粒径为(23.21±0.18) nm;GA-ME于4、25、45 ℃下储藏60 d后仍保持澄清透明,粒径稳定在23 nm左右,PDI保持在0.2以下,GA保留率在94%左右,说明该微乳具有良好的储藏稳定性;体外透皮性能实验结果显示,GA-ME中的香芹酚可显著促渗GA,GA在猪皮上的透皮量为28.45 μg/cm2;抗氧化性能实验结果表明,GA-ME的抗氧化效果明显优于将香芹酚或GA单独包载时的。综上,GA-ME可提高GA的溶解度和透皮性能,具有在医药和化妆品领域的应用价值。
英文摘要:
      In order to improve the solubility of glycyrrhetinic acid (GA) in water and promote its transdermal absorption, water adding method was employed to prepare GA microemulsion(GA-ME). By determining the solubility of GA in excipients, the surfactant aid was determined, the main components and preparation conditions of the microemulsion were preliminarily screened by single-factor experiment, and the formula was optimized by Box-Behnken response surface methodology. The storage stability, transdermal permeation and antioxidant performance of GA-ME were characterized. The results showed that transcutol P was selected as a surfactant aid, and the optimal formula was 4% caprylic/capric triglyceride (GTCC), 2% carvacrol, 14.4% Cremophor RH40,9.6% transcutol P, and 70% water. Under this formula, the GA loading of the microemulsion was (2.60±0.05) mg/mL, with particle size (23.21±0.18) nm. After 60 d of storage at 4, 25 ℃ and 45 ℃, GA-ME maintained clarity with stable particle size around 23 nm, PDI below 0.2, and a GA retention rate about 94%, demonstrating excellent storage stability. In vitro transdermal permeation tests revealed that the carvacrol in GA-ME significantly enhanced GA permeability, achieving a transdermal delivery of 28.45 μg/cm2 on porcine skin. Antioxidant efficacy studies showed that the antioxidant effect of GA-ME was significantly higher than that of GA or carvacrol when encapsulated individually in microemulsions. In conclusion, GA-ME effectively improves the solubility and transdermal permeation of GA, providing valuable reference for its applications in the fields of medicine and cosmetics.
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