Nastiti Christofori M R R, Ponto Thellie, Abd Eman, Grice Jeffrey E, Benson Heather A E, Roberts Michael S
School of Pharmacy, Curtin Health Innovation Research Institute, Curtin University, G.P.O. Box U1987, Perth, WA 6845, Australia.
Faculty of Pharmacy, Sanata Dharma University, Yogyakarta 55282, Indonesia.
Pharmaceutics. 2017 Sep 21;9(4):37. doi: 10.3390/pharmaceutics9040037.
Nanosystems such as microemulsions (ME) and nanoemulsions (NE) offer considerable opportunities for targeted drug delivery to and via the skin. ME and NE are stable colloidal systems composed of oil and water, stabilised by a mixture of surfactants and cosurfactants, that have received particular interest as topical skin delivery systems. There is considerable scope to manipulate the formulation components and characteristics to achieve optimal bioavailability and minimal skin irritancy. This includes the incorporation of established chemical penetration enhancers to fluidize the stratum corneum lipid bilayers, thus reducing the primary skin barrier and increasing permeation. This review discusses nanosystems with utility in skin delivery and focuses on the composition and characterization of ME and NE for topical and transdermal delivery. The mechanism of skin delivery across the stratum corneum and via hair follicles is reviewed with particular focus on the influence of formulation.
微乳剂(ME)和纳米乳剂(NE)等纳米系统为靶向给药至皮肤及经皮肤给药提供了大量机会。ME和NE是由油和水组成的稳定胶体系统,由表面活性剂和助表面活性剂的混合物稳定,作为局部皮肤给药系统受到了特别关注。在操控配方成分和特性以实现最佳生物利用度和最小皮肤刺激性方面有很大空间。这包括加入已有的化学渗透促进剂以使角质层脂质双层流化,从而降低主要的皮肤屏障并增加渗透性。本综述讨论了在皮肤给药中有用的纳米系统,并重点关注用于局部和透皮给药的ME和NE的组成及特性。综述了药物经角质层和通过毛囊的皮肤给药机制,特别关注配方的影响。