癸基葡糖苷对纳米脂质载体绿茶提取物局部制剂稳定性和刺激性的影响

Rufaidah Azzahrah, N. Rosita, D. Purwanto, Widji Soeratri
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引用次数: 0

摘要

背景:绿茶提取物(GTE)是一种天然抗氧化化合物,可以保护皮肤免受光致癌作用(紫外线照射引起的DNA损伤)。GTE具有低稳定性,需要一种递送系统,如具有癸基葡糖苷(DG)作为天然表面活性剂的纳米结构脂质载体(NLC),在适当的浓度下可以产生显著小的颗粒尺寸,从而提高NLC的稳定性。目的:测定DG的使用对NLC-GTE制剂的特性、物理稳定性和过敏性的影响。方法:NLC-GTE制剂采用高剪切均化(HSH)法制备,三个配方分别含有2%、2.5%和3%的DG。然后,使用热循环方法在两个不同温度(48小时/循环,2-8°C和40°C)下进行三次循环的特性和物理稳定性测试。过敏性试验采用绒毛尿囊素膜母鸡蛋试验(HET-CAM)法。结果:感官特性测试表明,所有配方均为白色、无臭、半固态。然而,所有配方的pH、粒度和多分散性指数值均在正常值范围内。物理稳定性试验结果表明,3%DG是最稳定的配方。该配方在HET-CAM的无刺激性数值范围内。结论:提高DG浓度的NLC-GTE作为表面活性剂可以改善制剂的性质和物理稳定性。与其他配方相比,F3(3%DG)是最好的配方,并且在HET-CAM测试中表明无刺激性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effect of Decyl Glucoside on Stability and Irritability of Nanostructured Lipid Carriers-Green Tea Extract as Topical Preparations
Background: Green Tea Extract (GTE) is a natural antioxidant compound that can protect the skin from photocarcinogenesis (DNA damage due to ultraviolet exposure). GTE has low stability, which needs a delivery system such as Nanostructured Lipid Carriers (NLC) with decyl glucoside (DG) as a natural surfactant that at the right concentration can produce a significantly small particle size which can improve the stability of the NLC. Objective: To determine the effect of DG usage on the characteristics, physical stability, and irritability of NLC-GTE preparation. Methods: NLC-GTE preparation used the High Shear Homogenization (HSH) method with three formulas, which contained DG 2%, 2.5%, and 3% consecutively. Afterwards, the characteristic and physical stability tests were conducted using the thermal cycling method for three cycles with two different temperatures (48 hours/cycle, 2 - 8°C and 40°C). The irritability test used Hen's Egg Test on the Chorioallantoic Membrane (HET-CAM) method. Results: Characteristic test of organoleptic showed that all formulas were white, odorless, and had a semi-solid consistency. However, the pH, particle size, and polydispersity index values from all formulas were within the normal range of values. The physical stability test result showed that 3% DG was the most stable formula. This formula was within the non-irritating range of values in HET-CAM. Conclusion: NLC-GTE with an increased concentration of DG as a surfactant can improve the characteristics and physical stability of the preparation. F3 (3% DG) is the best formula compared to other formulas and indicates non-irritating in the HET-CAM test.
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