Department of Pharmaceutical Technology and Cosmetology, Faculty of Pharmacy, University of Belgrade, Belgrade, Serbia.
Department of Pharmaceutical Chemistry, Faculty of Pharmacy, University of Belgrade, Belgrade, Serbia.
Int J Pharm. 2019 Oct 5;569:118624. doi: 10.1016/j.ijpharm.2019.118624. Epub 2019 Aug 13.
Nanostructured lipid carriers (NLC) and nanoemulsions (NE) are colloid carriers which could improve dermal delivery of tacrolimus. The aims of this study were to evaluate effects of different formulation and process parameters on physicochemical characteristics and stability of lecithin-based NLC with glyceryl palmitostearate as solid and propylene glycol monocaprylate as liquid lipid and to compare the influence of different inner structure of tacrolimus-loaded NLC and corresponding NE on physicochemical characteristics, stability, entrapment efficiency, in vitro drug release and overall skin performance. Solid/liquid lipid ratio, total amount of lipids, homogenization pressure and cooling after the preparation were identified as critical variables in NLC development. Moreover, tacrolimus-loaded NLC emerged as more stabile carrier than NE. Differential stripping performed on porcine ear skin revealed significantly higher tacrolimus amount in stratum corneum from nanocarriers compared to referent ointment (Protopic®). Similarly the highest amount of tacrolimus in hair follicles was obtained using NLC (268.54 ± 92.38 ng/cm), followed by NE (128.17 ± 48.87 ng/cm) and Protopic® (77.61 ± 43.25 ng/cm). Contrary, the highest permeation rate through full-thickness porcine ear skin was observed for Protopic®, implying that the selection of experimental setup is critical for reliable skin performance assessment. Overall, developed NLC could be suggested as promising carrier in a form of lotion for tacrolimus dermal delivery.
纳米结构脂质载体 (NLC) 和纳米乳剂 (NE) 是胶体载体,可改善他克莫司的经皮递送。本研究的目的是评估不同配方和工艺参数对以甘油棕榈硬脂酸酯为固体和丙二醇单辛酸酯为液体脂质的基于卵磷脂的 NLC 的理化特性和稳定性的影响,并比较不同结构的载有他克莫司的 NLC 和相应的 NE 对理化特性、稳定性、包封效率、体外药物释放和整体皮肤性能的影响。固体/液体脂质比、脂质总量、均质压力和制备后的冷却被确定为 NLC 开发的关键变量。此外,载有他克莫司的 NLC 比 NE 更稳定。在猪耳皮上进行的差分剥离显示,纳米载体中的他克莫司在角质层中的含量明显高于参比软膏(普特彼®)。同样,从纳米载体(NLC,268.54±92.38ng/cm)中获得的毛囊中他克莫司的含量最高,其次是 NE(128.17±48.87ng/cm)和普特彼®(77.61±43.25ng/cm)。相反,通过猪全厚耳皮的最高渗透速率是普特彼®,这意味着实验装置的选择对于可靠的皮肤性能评估至关重要。总的来说,开发的 NLC 可作为他克莫司经皮递送的乳剂形式的有前途的载体。