Lai Wing-Fu, Huang Eric, Lui Kwok-Ho
School of Pharmaceutical Sciences, Shenzhen University, Shenzhen 518060, China.
School of Life and Health Sciences, The Chinese University of Hong Kong (Shenzhen), Shenzhen 518172, China.
Asian J Pharm Sci. 2021 Jan;16(1):77-85. doi: 10.1016/j.ajps.2020.05.003. Epub 2020 Jun 25.
Hydrogels are soft materials consisting of a three-dimensional network of polymer chains. Over the years, hydrogels with different compositions have been developed as drug carriers for diverse biomedical applications, ranging from cancer therapy and wound care to the treatment of neurodegenerative and inflammatory diseases. Most of these carriers, however, are designed only to deliver single agents. Carriers based on hydrogels for co-delivery of multiple agents, with the release rate of each of the co-delivered agents tunable, are lacking. This study reports a one-pot method of fabricating alginate-based complex fibers with the Janus morphology, with carboxymethyl cellulose sodium functioning as a polymeric modifier of the properties of each of the fiber compartments. By using malachite green and minocycline hydrochloride as model drugs, the generated fibers demonstrate the capacity of enabling the release profile of each of the co-delivered drugs to be precisely controlled. Along with their negligible toxicity and the retention of the activity of the loaded drugs, the complex fibers reported in this study warrant further development and optimization for applications that involve co-delivery of multiple agents.
水凝胶是由聚合物链的三维网络组成的软材料。多年来,具有不同组成的水凝胶已被开发用作药物载体,用于从癌症治疗、伤口护理到神经退行性疾病和炎症性疾病治疗等各种生物医学应用。然而,这些载体大多仅设计用于递送单一药物。缺乏基于水凝胶的用于共同递送多种药物的载体,且每种共同递送药物的释放速率可调。本研究报告了一种一锅法制备具有Janus形态的藻酸盐基复合纤维的方法,其中羧甲基纤维素钠作为每个纤维隔室性质的聚合物改性剂。通过使用孔雀石绿和盐酸米诺环素作为模型药物,所生成的纤维显示出能够精确控制每种共同递送药物的释放曲线的能力。除了其可忽略不计的毒性以及所负载药物活性的保留之外,本研究中报道的复合纤维在涉及多种药物共同递送的应用中值得进一步开发和优化。