Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Ain Shams University, Cairo, Egypt; Department of Pharmaceutical Sciences, Pharmacy Program, Batterjee Medical College, Jeddah, Saudi Arabia.
Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Ain Shams University, Cairo, Egypt.
Int J Pharm. 2023 Jan 5;630:122388. doi: 10.1016/j.ijpharm.2022.122388. Epub 2022 Nov 11.
Limited oral bioavailability due to high hydrophilicity restricts the beneficial use of Rosmaranic acid (RM) that is characterized by many biological and pharmacological effects. The present work was addressed to extract RM from Rosmarinus officinalis L. leaves and then increase its lipophilicity and permeability through the application of hydrophobic ion pair (HIP) approach using ethyl lauroyl arginate (ELA) as a novel counter-ion. Different RM:ELA ratios were screened to optimize HIP formation process. The encapsulation of the optimized HIP into lipid nanocapsules (LNCs) was then achieved to facilitate oral administration. The results of % transmittance, % complexation efficiency (87.32 ± 0.19%) and partition coefficient revealed the successful formation of the HIP complex occurred at RM:ELA molar ratio of 1:2. The formed HIP was successfully loaded into spherical small sized (39.32 ± 0.18 nm) LNCs. The ex vivo permeability studies across porcine intestine showed that the cumulative RM amount permeated/area after 6 h from HIP and LNCs were 3.79 ± 0.57 and 5.71 ± 0.32 µg/cm, respectively. Pharmacokinetic study results showed that the maximum RM concentrations in plasma (C) can be arranged in a descending manner as follows; 61.33 ± 8.89 < 42.13 ± 11.22 < 20.96 ± 3.12 ng/ml attained after 4.80, 8.00 and 10.40 h in case of LNC, HIP and solution, respectively. Moreover, the HIP and LNC formulae showed higher total drug amounts in plasma reaching 1.46 and 1.88-fold relative to RM solution, respectively. In conclusion, the HIP complex and HIP loaded LNCs prosper in enhancing the permeability and absorption of the low permeable drugs.
由于高度亲水性,罗蔓辛酸(RM)的口服生物利用度有限,限制了其许多生物和药理作用的有益应用。本工作旨在从迷迭香叶中提取 RM,然后通过应用疏水离子对(HIP)方法,用乙基月桂酰精氨酸(ELA)作为新型反离子,提高其亲脂性和通透性。筛选了不同的 RM:ELA 比例来优化 HIP 形成过程。然后将优化的 HIP 包封到脂质纳米胶囊(LNC)中,以促进口服给药。透光率%、络合效率%(87.32±0.19%)和分配系数的结果表明,在 RM:ELA 摩尔比为 1:2 时,成功地形成了 HIP 配合物。形成的 HIP 成功地负载到球形小尺寸(39.32±0.18nm)的 LNC 中。猪肠体外渗透研究表明,HIP 和 LNC 给药后 6 小时内 RM 累积渗透量/面积分别为 3.79±0.57 和 5.71±0.32µg/cm。药代动力学研究结果表明,最大 RM 浓度在血浆(C)中可按以下顺序排列:4.80、8.00 和 10.40 小时后,LNC、HIP 和溶液组的 C 分别为 61.33±8.89<42.13±11.22<20.96±3.12ng/ml。此外,HIP 配方和 LNC 配方在血浆中的总药物量分别比 RM 溶液高 1.46 和 1.88 倍。综上所述,HIP 配合物和 HIP 负载的 LNC 可提高低渗透性药物的通透性和吸收。