Department of Pharmaceutics, Manipal College of Pharmaceutical Sciences, Manipal Academy of Higher Education, Manipal 576104, Karnataka State, India.
Department of Dermatology, MS Ramaiah Medical College, MSR Nagar, Bangalore 560054, Karnataka State, India.
Curr Pharm Des. 2018;24(27):3210-3222. doi: 10.2174/1381612824666180924122640.
Advances in material science and particle engineering have led to the development of a rapidly growing number of nanoparticulate carriers for drug and gene delivery. These carriers are increasingly being investigated in dermal and transdermal routes of drug administration.
To critically examine and summarize the primary factors and mechanisms involved in nanocarriermediated dermal and transdermal delivery of drugs.
Thorough literature search was undertaken, spanning the early development of nanocarrier-mediated dermal and transdermal drug delivery approaches, to the current state of the art, using online search tools.
Physicochemical, formulation, experimental and morphological factors, such as, material of construction or type of nanoparticle (NP), surface chemistry, particle size, particle shape, surface charge, dispersion medium, duration of exposure of skin to NPs, combination of NPs with physical agents, and aspects related to skin were identified and discussed.
The key factors and mechanisms which influence NPs-skin interactions in dermal and transdermal drug delivery are discussed in this article in-line with the current advances in the field.
材料科学和颗粒工程的进步使得越来越多的纳米颗粒载体被开发出来,用于药物和基因的递送。这些载体在经皮和透皮给药途径中的应用也在不断增加。
批判性地检查和总结药物经皮和透皮传递中纳米载体介导的主要因素和机制。
使用在线搜索工具,对纳米载体介导的经皮和透皮药物传递方法的早期发展到目前的最新技术进行了全面的文献检索。
物理化学、制剂、实验和形态学因素,如构建材料或纳米颗粒(NP)的类型、表面化学、粒径、颗粒形状、表面电荷、分散介质、皮肤暴露于 NP 的持续时间、NP 与物理制剂的结合,以及与皮肤相关的方面都被确定并进行了讨论。
本文讨论了影响经皮和透皮药物传递中 NPs-皮肤相互作用的关键因素和机制,与该领域的最新进展相一致。