Rezvanian Masoud, Ahmad Naveed, Mohd Amin Mohd Cairul Iqbal, Ng Shiow-Fern
Centre of Drug Delivery Research, Faculty of Pharmacy, University Kebangsaan Malaysia, Jalan Raja Muda Abdul Aziz, 50300, Kuala Lumpur, Malaysia.
Department of Pharmacy, Forman Christian College (A Chartered University), Ferozepur Road 54600, Lahore, Pakistan.
Int J Biol Macromol. 2017 Apr;97:131-140. doi: 10.1016/j.ijbiomac.2016.12.079. Epub 2017 Jan 4.
Natural polymer-based hydrogel films have great potential for biomedical applications and are good candidates for wound dressings. In this study, we aimed to develop simvastatin-loaded crosslinked alginate-pectin hydrogel films by ionic crosslinking to improve the mechanical characteristics, wound fluid uptake and drug release behavior. Alginate-pectin hydrocolloid films were chemically crosslinked by immersing in different concentrations of CaCl (0.5-3% w/v) for 2-20min. The degree of crosslinking was influenced by both contact time and CaCl concentration. The optimized conditions for crosslinking were 0.5% and 1% (CaCl) for 2min. The optimized hydrogel films were then characterized for their physical, mechanical, morphological, thermal, in vitro drug release, and cytocompatibility profiles. Crosslinking improved the mechanical profile and wound fluid uptake capacity of dressings. The hydrogel films were able to maintain their physical integrity during use, and the best results were obtained with the film in which the extent of crosslinking was low (0.5%). Thermal analysis confirmed that the crosslinking process enhanced the thermal stability of hydrogel films. Sustained, slow release of simvastatin was obtained from the crosslinked films and in vitro cytotoxicity assay demonstrated that the hydrogel films were non-toxic.
基于天然聚合物的水凝胶薄膜在生物医学应用方面具有巨大潜力,是伤口敷料的理想选择。在本研究中,我们旨在通过离子交联开发负载辛伐他汀的交联藻酸盐-果胶水凝胶薄膜,以改善其机械性能、伤口液体吸收能力和药物释放行为。藻酸盐-果胶水胶体薄膜通过浸入不同浓度的CaCl(0.5-3% w/v)中2-20分钟进行化学交联。交联程度受接触时间和CaCl浓度的影响。交联的优化条件是0.5%和1%(CaCl),交联时间为2分钟。然后对优化后的水凝胶薄膜进行物理、机械、形态、热性能、体外药物释放和细胞相容性分析。交联改善了敷料的机械性能和伤口液体吸收能力。水凝胶薄膜在使用过程中能够保持其物理完整性,交联程度低(0.5%)的薄膜效果最佳。热分析证实交联过程提高了水凝胶薄膜的热稳定性。交联薄膜实现了辛伐他汀的持续、缓慢释放,体外细胞毒性试验表明水凝胶薄膜无毒。