Afify Enas A M R, Elsayed Ibrahim, Gad Mary K, Mohamed Magdy I, Afify Abd El-Moneim M R
National Organization for Drug Control and Research (NODCAR), Giza, Egypt.
Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Cairo University, Cairo, Egypt.
PLoS One. 2018 Feb 5;13(2):e0191415. doi: 10.1371/journal.pone.0191415. eCollection 2018.
Dorzolamide hydrochloride is frequently administered for the control of the intra-ocular pressure associated with glaucoma. The aim of this study is to develop and optimize self-assembled nanostructures of dorzolamide hydrochloride and L-α-Phosphatidylcholine to improve the pharmacokinetic parameters and extend the drug pharmacological action. Self-assembled nanostructures were prepared using a modified thin-film hydration technique. The formulae compositions were designed based on response surface statistical design. The prepared self-assembled nanostructures were characterized by testing their drug content, particle size, polydispersity index, zeta potential, partition coefficient, release half-life and extent. The optimized formulae having the highest drug content, zeta potential, partition coefficient, release half-life and extent with the lowest particle size and polydispersity index were subjected to further investigations including investigation of their physicochemical, morphological characteristics, in vivo pharmacokinetic and pharmacodynamic profiles. The optimized formulae were prepared at pH 8.7 (F5 and F6) and composed of L-α-Phosphatidylcholine and drug mixed in a ratio of 1:1 and 2:1 w/w, respectively. They showed significantly higher Cmax, [Formula: see text] and [Formula: see text] at the aqueous humor with extended control over the intra-ocular pressure, when compared to the marketed product; Trusopt®. The study introduced novel and promising self-assembled formulae able to permeate higher drug amount through the cornea and achieve sustained pharmacological effect at the site of action.
盐酸多佐胺常用于控制与青光眼相关的眼压。本研究的目的是开发并优化盐酸多佐胺与L-α-磷脂酰胆碱的自组装纳米结构,以改善药代动力学参数并延长药物的药理作用。采用改良的薄膜水化技术制备自组装纳米结构。基于响应面统计设计来设计配方组成。通过测试所制备自组装纳米结构的药物含量、粒径、多分散指数、zeta电位、分配系数、释放半衰期和释放程度对其进行表征。对具有最高药物含量、zeta电位、分配系数、释放半衰期和释放程度以及最低粒径和多分散指数的优化配方进行进一步研究,包括研究其物理化学、形态特征、体内药代动力学和药效学概况。优化配方在pH 8.7条件下制备(F5和F6),分别由L-α-磷脂酰胆碱和药物按1:1和2:1 w/w的比例混合而成。与市售产品Trusopt®相比,它们在房水中显示出显著更高的Cmax、[公式:见原文]和[公式:见原文],并能对眼压进行更持久的控制。该研究引入了新颖且有前景的自组装配方,能够使更多药物透过角膜,并在作用部位实现持续的药理作用。