a Department of Pharmacy , Quaid.i.Azam University , Islamabad , Pakistan.
J Drug Target. 2018 Feb;26(2):110-122. doi: 10.1080/1061186X.2017.1374388. Epub 2017 Sep 18.
Nanotechnology has burgeoned over last decade exploring varieties of novel applications in all areas of science and technology. Utilisation of bio-friendly polymers for engineering nanostructures (NS) improves safety and efficacy in drug delivery. Biopolymers not merely employed for fabricating drug carriers but also leveraged for surface functionalisation of other NS to impart bio-mimicking properties. Biopolymer functionalised NS garnered researcher's attention because of their potential to enhance skin permeability of drug cargo. Biopolymers, i.e. cell-penetrating peptides (CPP), chitosan and hyaluronic acid not only enhance skin permeability but also add multiple functions due to their intrinsic biomimetic properties. This multifunctional drug delivery system is a promising tool to achieve skin delivery of large number of therapeutic agents. In this review, functionalisation of NS with biopolymers particularly polysaccharides and polypeptides is discussed in detail. In particular, applications of these functionalised NS for TDDS is elaborated. Moreover, this review provides framework for elaborating importance of functionalisation of NS to enhance skin permeability and depicts advantages of biopolymers to construct more biocompatible carriers for drug cargos.
过去十年,纳米技术蓬勃发展,探索了各种新颖的应用,涉及科学和技术的各个领域。生物友好型聚合物在工程纳米结构 (NS) 中的应用提高了药物输送的安全性和有效性。生物聚合物不仅用于制造药物载体,还用于其他 NS 的表面功能化,以赋予仿生特性。由于其潜在的增强药物载体的皮肤渗透性,生物聚合物功能化的 NS 引起了研究人员的关注。生物聚合物,即细胞穿透肽 (CPP)、壳聚糖和透明质酸,不仅增强了皮肤的渗透性,而且由于其固有仿生特性,还增加了多种功能。这种多功能药物输送系统是实现大量治疗剂经皮输送的有前途的工具。在这篇综述中,详细讨论了 NS 与生物聚合物(特别是多糖和多肽)的功能化。特别是,阐述了这些功能化 NS 在 TDDS 中的应用。此外,本综述为阐述 NS 功能化以增强皮肤渗透性的重要性提供了框架,并描述了生物聚合物构建更具生物相容性的药物载体的优势。