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基于 QbD 的磷脂微乳水凝胶的构建及其作为利多卡因和丙胺卡因经皮传递载体的评价

Phospholipid microemulsion-based hydrogel for enhanced topical delivery of lidocaine and prilocaine: QbD-based development and evaluation.

机构信息

a UGC Centre of Advanced Studies , University Institute of Pharmaceutical Sciences, Panjab University , Chandigarh , India .

b UGC-Centre of Excellence in Nano Applications (Biomedical Sciences) , Panjab University , Chandigarh , India and.

出版信息

Drug Deliv. 2016;23(3):951-67. doi: 10.3109/10717544.2014.923067. Epub 2014 Jun 3.

Abstract

Topical delivery of local anesthetics has been an area of interest for researchers considering the barrier properties of skin and unfavorable physicochemical properties of drugs. In the present study, efforts have been made to modify the in vivo efficacy of eutectic mixture of lidocaine and prilocaine by exploiting the phospholipid modified microemulsion based delivery systems. The strategic QbD (D-optimal mixture design) enabled systematic optimization approach, after having obtained the isotropic area of interest by ternary phase diagram, has resulted into the system with most desirable attributes. Latter include nano-scale, globular structures with an average size of 40.6 nm, as characterized by TEM and DLS. The optimized microemulsion systems in gel dosage forms revealed the better permeability over commercial cream (CC) through abdominal rat skin. Enhancement in the flux from MOPT-NMP gel was 3.22-folds for prilocaine and 4.94-folds for lidocaine, in comparison to that of CC. This enhanced skin permeability is very well reflected in the in vivo studies, wherein intensity and duration of action was augmented significantly. The skin compliance of the optimized formulation was revealed in histopathological studies. The overall benefit relating to efficacy and safety-compliance could be correlated to the uniqueness of the carriers, composed of phospholipids and other components. Hence, the developed phospholipid-microemulsion based gel formulation has been proposed as more useful alternative for the topical delivery of lidocaine and prilocaine.

摘要

局部麻醉剂的经皮给药一直是研究人员感兴趣的领域,这考虑到了皮肤的屏障性质和药物的不良物理化学性质。在本研究中,通过利用磷脂改性的微乳给药系统,努力改善利多卡因和丙胺卡因共晶混合物的体内疗效。通过使用 QbD(D-最优混合物设计)策略,在获得感兴趣的各向同性区域后,采用三元相图进行了系统优化,得到了具有最理想特性的系统。后者包括纳米级、球形结构,平均粒径为 40.6nm,这是通过 TEM 和 DLS 进行表征的。优化后的微乳凝胶制剂系统通过腹部大鼠皮肤显示出比商业乳膏(CC)更好的渗透性。与 CC 相比,MOPT-NMP 凝胶中丙胺卡因的通量增加了 3.22 倍,利多卡因的通量增加了 4.94 倍。这种增强的皮肤渗透性在体内研究中得到了很好的反映,其中作用的强度和持续时间显著增加。优化配方的皮肤顺应性在组织病理学研究中得到了揭示。关于疗效和安全性的整体好处可以与载体的独特性相关联,载体由磷脂和其他成分组成。因此,所开发的基于磷脂的微乳凝胶制剂被提议作为利多卡因和丙胺卡因经皮给药的更有用的替代方案。

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