Solid State Pharmaceutics Laboratory, Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER), Sector-67, S.A.S. Nagar, Mohali, Punjab 160 062, India.
Dr Reddy's Laboratories Limited, IPDO, Survey No. 54, Bachupally (V), Bachupally (M), Medchal-Malkajgiri, Telangana 500 090, India.
Drug Discov Today. 2021 Oct;26(10):2329-2349. doi: 10.1016/j.drudis.2021.07.010. Epub 2021 Jul 13.
The barrier function of skin and the non-optimal physicochemical properties of drugs present challenges to the skin penetration of many drugs, thus motivating the development of novel drug delivery systems. Recently, nanocrystal-based formulations have been investigated for topical drug delivery and have demonstrated improved skin penetration. This review highlights barriers in skin penetration, current techniques to improve topical delivery and application of nanocrystals in conquering obstacles for topical delivery. Nanocrystals can improve delivery through the skin by mechanisms including the creation of a higher concentration gradient across skin resulting in increased passive diffusion, hair follicle targeting, formation of diffusional corona, and adhesion to skin. The recent research would be of interest for formulation scientists seeking to develop products involving molecules that are 'difficult-to-deliver' topically.
皮肤的屏障功能和药物不理想的物理化学性质对许多药物的皮肤渗透构成了挑战,因此激发了新型药物传递系统的发展。最近,基于纳米晶体的制剂已被用于局部药物递送,并已证明可改善皮肤渗透。本综述重点介绍了皮肤渗透的障碍,当前改善局部递送的技术以及纳米晶体在克服局部递送障碍方面的应用。纳米晶体可以通过以下机制改善药物经皮传递:在皮肤中产生更高的浓度梯度,从而增加被动扩散;靶向毛囊;形成扩散冠;以及与皮肤黏附。最近的研究将引起寻求开发涉及“难以局部递送”的分子的产品的制剂科学家的兴趣。