Department of Pharmaceutics and Biopharmaceutics, Philipps-Universität Marburg, Marburg, Germany.
Department of Pharmaceutics and Biopharmaceutics, Philipps-Universität Marburg, Marburg, Germany; Tongji Medical College, School of Pharmacy, Huazhong University of Science and Technology, Wuhan, China.
Eur J Pharm Biopharm. 2018 Jul;128:170-178. doi: 10.1016/j.ejpb.2018.04.020. Epub 2018 Apr 20.
Nanocrystals are composed of 100% active and possess an increased aqueous solubility and dissolution velocity when compared to larger sized materials. Nanocrystals can be used to improve the bioavailability of poorly soluble actives not only for oral, but also for topical application. In this study nanocrystals of different sizes were produced and the influence of size on dermal penetration was investigated. The influence of different excipients and vehicles on the penetration efficacy upon dermal application was also investigated. Results confirm that dermal penetration of poorly soluble actives increases with decreasing size of the nanocrystals. Unexpectedly, it was observed that many classical penetration enhancers failed to promote the penetration of actives from nanocrystals. Also hydrogels were found to be non-suitable vehicles for the formulation of nanocrystals. As most suitable vehicles for nanocrystals oleogels and creams were identified.
纳米晶体由 100%的活性物质组成,与较大尺寸的材料相比,具有更高的水溶解度和溶解速度。纳米晶体可用于提高生物利用度差的活性物质的生物利用度,不仅可用于口服,也可用于局部应用。在这项研究中,制备了不同粒径的纳米晶体,并研究了粒径对皮肤渗透的影响。还研究了不同赋形剂和载体对经皮应用时渗透效果的影响。结果证实,随着纳米晶体粒径的减小,生物利用度差的活性物质的皮肤渗透增加。出乎意料的是,观察到许多经典的渗透增强剂未能促进活性物质从纳米晶体中的渗透。此外,还发现水凝胶不适合作为纳米晶体的制剂载体。发现油凝胶和乳膏是最适合纳米晶体的载体。