Advanced Materials and Nanotechnology Group, Center of Excellence for Advanced Sciences, Department of Spectroscopy, Division of Physics, National Research Center, Cairo, Egypt.
Carbohydr Polym. 2012 Oct 15;90(3):1244-53. doi: 10.1016/j.carbpol.2012.06.056. Epub 2012 Jun 29.
The main objective of the present work was to prepare warfarin-β-cyclodextrin (WAF-β-CD) loaded chitosan (CS) nanoparticles for transdermal delivery. CS is a hydrophilic carrier therefore, to overcome the hydrophobic nature of WAF and allow its incorporation into CS nanoparticles, WAF was first complexed with β-cyclodextrin (β-CD). CS nanoparticles were prepared by ionotropic pre-gelation using tripolyphosphate (TPP). Morphology, size and structure characterization of nanoparticles were carried out using SEM, TEM and FTIR, respectively. Nanoparticles prepared with 3:1 CS:TPP weight ratio and 2mg/ml final CS concentration were found optimum. They possessed spherical particles (35±12nm diameter) with narrow size distribution (PDI=0.364) and 94% entrapment efficiency. The in vitro release as well as the ex vivo permeation profiles of WAF-β-CD from the selected nanoparticle formulation were studied at different time intervals up to 8h. In vitro release of WAF-β-CD from CS nanoparticles followed a Higuchi release profile whereas its ex vivo permeation (at pH 7.4) followed a zero order permeation profile. Results suggested that the developed WAF-β-CD loaded CS carrier could offer a controlled and constant delivery of WAF transdermally.
本工作的主要目的是制备华法林-β-环糊精(WAF-β-CD)负载壳聚糖(CS)纳米粒用于经皮给药。CS 是一种亲水性载体,因此,为了克服 WAF 的疏水性并允许其掺入 CS 纳米粒中,首先将 WAF 与β-环糊精(β-CD)络合。通过使用三聚磷酸钠(TPP)进行离子凝胶化来制备 CS 纳米粒。使用 SEM、TEM 和 FTIR 分别对纳米粒的形态、粒径和结构进行了表征。发现以 3:1 的 CS:TPP 重量比和 2mg/ml 的最终 CS 浓度制备的纳米粒为最佳。它们具有球形颗粒(直径为 35±12nm),粒径分布较窄(PDI=0.364),包封效率为 94%。在不同的时间间隔(最长 8 小时)内研究了 WAF-β-CD 从选定的纳米粒制剂中的体外释放和体外渗透特性。WAF-β-CD 从 CS 纳米粒中的体外释放遵循 Higuchi 释放曲线,而其体外渗透(在 pH7.4 下)遵循零级渗透曲线。结果表明,所开发的 WAF-β-CD 负载 CS 载体可经皮提供 WAF 的控制和恒速释放。