Alshehri Sultan, Imam Syed Sarim, Hussain Afzal, Alyousef Abdul Malik, Altamimi Mohammad, Alsulays Bader, Shakeel Faiyaz
Department of Pharmaceutics, College of Pharmacy, King Saud University.
College of Pharmacy, Almaarefa University.
J Oleo Sci. 2020 Oct 7;69(10):1257-1271. doi: 10.5650/jos.ess20070. Epub 2020 Sep 10.
This research work aimed to prepare and optimize "self-nanoemulsifying drug delivery system (SNEDDS)" by applying full factorial design (FFD) to improve solubilization and subsequently antiinflammatory efficacy of flufenamic acid (FLF). Suitable excipients were screened out based on the maximum solubility of FLF. FFD was applied using lipid (X) and surfactant (X) as independent variables against droplet size (Y, nm), zeta potential (Y, mV) and polydispersity index (PDI, Y). Desirability function identified the main factors influencing the responses and possible interactions. Moreover, the optimized formulation (OFS1) was characterized and compared with pure FLF suspension. The prepared formulations (FS1-FS9) showed the size, PDI and zeta potential of 14.2-110.7 nm, 0.29-0.62 and -15.1 to -28.6 mV, respectively. The dispersion and emulsification of all formulations meted out within 2 min suggesting immediate release and successful solubilization. The optimized formulation OFS1 demonstrated ~ 85% drug release within 1 h which was significantly higher (p ˂ 0.05) than FLF suspension. The hemolysis study negated the probable interaction with blood cells. Eventually, improved anti-inflammatory efficacy was envisaged which might be attributed to increased drug solubility and absorption. The present nanocarrier could be a promising approach and alternative to conventional dosage form.
本研究旨在通过应用全因子设计(FFD)来制备和优化“自纳米乳化药物递送系统(SNEDDS)”,以提高氟芬那酸(FLF)的溶解度并随后提高其抗炎功效。基于FLF的最大溶解度筛选出合适的辅料。以脂质(X)和表面活性剂(X)作为自变量,针对液滴尺寸(Y,nm)、zeta电位(Y,mV)和多分散指数(PDI,Y)应用FFD。合意函数确定了影响响应的主要因素以及可能的相互作用。此外,对优化后的制剂(OFS1)进行了表征,并与纯FLF混悬液进行了比较。所制备的制剂(FS1-FS9)的粒径、PDI和zeta电位分别为14.2-110.7nm、0.29-0.62和-15.1至-28.6mV。所有制剂在2分钟内完成分散和乳化,表明为速释且成功增溶。优化后的制剂OFS1在1小时内显示出约85%的药物释放,这显著高于(p<0.05)FLF混悬液。溶血研究排除了与血细胞可能的相互作用。最终,设想其抗炎功效得到改善,这可能归因于药物溶解度和吸收的增加。本纳米载体可能是一种有前景的方法,可替代传统剂型。