Department of Pharmaceutics, Bombay College of Pharmacy, Kalina, Santacruz (East), 400098 Mumbai, India.
Friedrich-Schiller-Universität Jena, Institut für Pharmazie, Lehrstuhl für Pharmazeutische Technologie, Lessingstraße 8, 07743 Jena, Germany.
Int J Pharm. 2015 Jul 25;490(1-2):391-403. doi: 10.1016/j.ijpharm.2015.05.042. Epub 2015 May 19.
The present study compares three vesicular systems, cationic LeciPlex, invasomes, and conventional liposomes for their ability to deliver drugs deep into the skin. Skin penetration ability of the three vesicular systems was studied for two drugs namely idebenone (antioxidant/anticancer) and azelaic acid (antiacne). All systems showed sizes in nanometer range with small polydispersity indices. Vesicular systems were characterized by CryoTEM studies to understand the differences in morphology of the vesicular systems. Ex vivo human skin penetration studies suggested a pattern in penetration of drugs in different layers of the skin: LeciPlex showed higher penetration for idebenone whereas invasomes showed higher penetration of azelaic acid. Ex vivo study using a fluorescent dye (DiI) was performed to understand the differences in the penetration behavior of the three vesicular systems on excised human skin. In vitro cytotoxicity studies on B16F10 melanoma cell lines revealed, when loaded with idebenone, LeciPlex formulations had the superior activity followed by invasomes and liposomes. In vitro antimicrobial study of azelaic acid loaded systems on Propionibacterium acne revealed high antimicrobial activity for DDAB leciplex followed by almost equal activity for invasomes and CTAB LeciPlex followed by liposomes. Whereas antiacne efficacy study in rats for azelaic acid loaded systems, invasomes exhibited the best antiacne efficacy followed by liposomes and LeciPlex.
本研究比较了三种囊泡系统,阳离子 Lec iPlex、入侵体和普通脂质体,以评估它们将药物递送至皮肤深层的能力。研究了这三种囊泡系统对两种药物(即艾地苯醌(抗氧化剂/抗癌药)和壬二酸(治疗痤疮药))的皮肤渗透能力。所有系统的粒径均在纳米范围内,且具有较小的多分散指数。通过冷冻透射电子显微镜(CryoTEM)研究对囊泡系统进行了表征,以了解囊泡系统形态的差异。离体人皮内渗透研究表明,药物在皮肤不同层中的渗透模式存在差异:L ec iPlex 对艾地苯醌的渗透能力更高,而入侵体对壬二酸的渗透能力更高。为了了解三种囊泡系统在离体人皮肤上的渗透行为差异,进行了使用荧光染料(DiI)的离体研究。体外 B16F10 黑色素瘤细胞系的细胞毒性研究表明,当负载艾地苯醌时,L ec iPlex 制剂具有更高的活性,其次是入侵体和脂质体。载有壬二酸的系统对痤疮丙酸杆菌的体外抗菌研究表明,DDAB Lec iPlex 具有很高的抗菌活性,其次是入侵体和 CTAB Lec iPlex,然后是脂质体。而在载有壬二酸的系统的大鼠抗痤疮功效研究中,入侵体表现出最好的抗痤疮功效,其次是脂质体和 L ec iPlex。