Rachmawati Heni, Budiputra Dewa Ken, Mauludin Rachmat
Department of Pharmacy, Bandung Institute of Technology , Bandung , Indonesia.
Drug Dev Ind Pharm. 2015 Apr;41(4):560-6. doi: 10.3109/03639045.2014.884127. Epub 2014 Feb 7.
The aim of this work is to develop a curcumin nanoemulsion for transdermal delivery. The incorporation of curcumin inside a nanoglobul should improve curcumin stability and permeability. A nanoemulsion was prepared by the self-nanoemulsification method, using an oil phase of glyceryl monooleate, Cremophor RH40 and polyethylene glycol 400. Evaluation of the nanoemulsion included analysis of particle size, polydispersity index, zeta potential, physical stability, Raman spectrum and morphology. In addition, the physical performance of the nanoemulsion in Viscolam AT 100P gel was studied. A modified vertical diffusion cell and shed snake skin of Python reticulatus were used to study the in vitro permeation of curcumin. A spontaneously formed stable nanoemulsion has a loading capacity of 350 mg curcumin/10 g of oil phase. The mean droplet diameter, polydispersity index and zeta potential of optimized nanoemulsion were 85.0 ± 1.5 nm, 0.18 ± 0.0 and -5.9 ± 0.3 mV, respectively. Curcumin in a nanoemulsion was more stable than unencapsulated curcumin. Furthermore, nanoemulsification significantly improved the permeation flux of curcumin from the hydrophilic matrix gel; the release kinetic of curcumin changed from zero order to a Higuchi release profile. Overall, the developed nanoemulsion system not only improved curcumin permeability but also protected the curcumin from chemical degradation.
这项工作的目的是开发一种用于透皮给药的姜黄素纳米乳剂。将姜黄素包裹在纳米球内可提高姜黄素的稳定性和渗透性。采用自乳化法,以单油酸甘油酯为油相、聚氧乙烯蓖麻油RH40和聚乙二醇400制备了纳米乳剂。对纳米乳剂的评估包括粒径分析、多分散指数、zeta电位、物理稳定性、拉曼光谱和形态学。此外,还研究了纳米乳剂在Viscolam AT 100P凝胶中的物理性能。采用改良的垂直扩散池和网纹蟒的蜕下蛇皮研究姜黄素的体外渗透。自发形成的稳定纳米乳剂的载药量为350mg姜黄素/10g油相。优化后的纳米乳剂的平均液滴直径、多分散指数和zeta电位分别为85.0±1.5nm、0.18±0.0和-5.9±0.3mV。纳米乳剂中的姜黄素比未包封的姜黄素更稳定。此外,纳米乳化显著提高了姜黄素从亲水性基质凝胶中的渗透通量;姜黄素的释放动力学从零级变为Higuchi释放曲线。总体而言,所开发的纳米乳剂系统不仅提高了姜黄素的渗透性,还保护了姜黄素免受化学降解。