Ahmad Niyaz, Ahmad Rizwan, Al-Qudaihi Ali, Alaseel Salman Edrees, Fita Ibrahim Zuhair, Khalid Mohammed Saifuddin, Pottoo Faheem Hyder
Department of Pharmaceutics, College of Clinical Pharmacy, Imam Abdulrahman Bin Faisal University P. O. Box 1982 Dammam Kingdom of Saudi Arabia-31441
Department of Pharmaceutical Chemistry, College of Clinical Pharmacy, Imam Abdulrahman Bin Faisal University Dammam Kingdom of Saudi Arabia.
RSC Adv. 2019 Jun 28;9(35):20192-20206. doi: 10.1039/c9ra03102b. eCollection 2019 Jun 25.
The aim of this study was to develop and evaluate a curcumin (Cur) nanoemulsion (NE) and enhance transdermal drug delivery. The comparative effects of Cur-NE were evaluated in terms of wound healing and anti-inflammatory action. Clove oil (oil), Tween-80 (surfactant), and PEG-400 (co-surfactant) were selected on the basis of their solubility and maximum nanoemulsion region. An aqueous micro-titration method with high-energy ultrasonication was used for the preparation of Cur-NE. This method was optimized to find the best NE, followed by a five-factor, three-level, central composite design. % oil, % , ultrasonication time (min), ultrasonication intensity (%), and temperature (°C) were selected and optimized as independent variables. The optimized NE had parameters of 5.0% oil, 10% , ultrasonication time (10 min), 40% ultrasonication intensity and 50 °C temperature, which were applied as independent and dependent variables. On the basis of experimental data of the dependent variables, we calculated a hydrodynamic diameter of 93.64 ± 6.48 nm, transmittance of 98.64 ± 0.37%, and PDI of 0.263 ± 0.021. TEM and SEM results revealed the smooth and spherical shape of the particles in the NE, with a zeta potential of -11.67 ± 0.11, refractive index of 1.71 ± 0.034, viscosity of 37 ± 7 cp, pH of 7.4 ± 0.07, and drug content of 98.11 ± 0.16% for the optimized Cur-NE. Cur-NE optimization with clove oil, Tween-80, and PEG-400 might be useful for enhancing the skin permeation of Cur. In conclusion, Cur-NE played a significant role in wound healing and exhibited anti-inflammatory effects, demonstrating its potential as a nanoformulation for safe and nontoxic transdermal delivery.
本研究的目的是开发并评估姜黄素(Cur)纳米乳剂(NE),并增强经皮给药效果。从伤口愈合和抗炎作用方面评估了Cur-NE的比较效果。根据丁香油(油相)、吐温-80(表面活性剂)和聚乙二醇-400(助表面活性剂)的溶解度和最大纳米乳剂区域进行选择。采用高能超声的水相微量滴定法制备Cur-NE。对该方法进行优化以找到最佳纳米乳剂,随后采用五因素、三水平的中心复合设计。选择油相百分比、吐温-80百分比、超声时间(分钟)、超声强度(%)和温度(℃)作为自变量并进行优化。优化后的纳米乳剂参数为油相5.0%、吐温-80 10%、超声时间(10分钟)、超声强度40%和温度50℃,将其作为自变量和因变量。根据因变量的实验数据,计算出流体动力学直径为93.64±6.48nm,透光率为98.64±0.37%,多分散指数为0.263±0.021。透射电子显微镜(TEM)和扫描电子显微镜(SEM)结果显示纳米乳剂中颗粒呈光滑球形,优化后的Cur-NE的ζ电位为-11.67±0.11,折射率为1.71±0.034,粘度为37±7厘泊,pH值为7.4±0.07,药物含量为98.11±0.16%。用丁香油、吐温-80和聚乙二醇-400对Cur-NE进行优化可能有助于增强Cur的皮肤渗透。总之,Cur-NE在伤口愈合中发挥了重要作用并表现出抗炎作用,证明其作为安全无毒经皮给药纳米制剂的潜力。