Drug Transport and Delivery Research Group, Department of Pharmacy, UiT The Arctic University of Norway, Universitetsvegen 57, 9037 Tromsø, Norway.
Mar Drugs. 2021 Dec 8;19(12):697. doi: 10.3390/md19120697.
Chitosan is one of the most studied natural origin polymers for biomedical applications. This review focuses on the potential of chitosan in localized antimicrobial therapy to address the challenges of current rising antimicrobial resistance. Due to its mucoadhesiveness, chitosan offers the opportunity to prolong the formulation residence time at mucosal sites; its wound healing properties open possibilities to utilize chitosan as wound dressings with multitargeted activities and more. We provide an unbiased overview of the state-of-the-art chitosan-based delivery systems categorized by the administration site, addressing the site-related challenges and evaluating the representative formulations. Specifically, we offer an in-depth analysis of the current challenges of the chitosan-based novel delivery systems for skin and vaginal infections, including its formulations optimizations and limitations. A brief overview of chitosan's potential in treating ocular, buccal and dental, and nasal infections is included. We close the review with remarks on toxicity issues and remaining challenges and perspectives.
壳聚糖是研究最多的用于生物医学应用的天然来源聚合物之一。本综述重点介绍了壳聚糖在局部抗菌治疗中的潜力,以应对当前抗菌耐药性不断上升的挑战。由于其粘膜粘附性,壳聚糖为延长制剂在粘膜部位的停留时间提供了机会;其伤口愈合特性为将壳聚糖用作具有多靶向作用的伤口敷料开辟了可能性等。我们提供了一个公正的综述,根据给药部位对基于壳聚糖的递药系统进行分类,解决与部位相关的挑战并评估代表性制剂。具体而言,我们深入分析了壳聚糖新型递药系统治疗皮肤和阴道感染的当前挑战,包括其制剂的优化和局限性。还简要概述了壳聚糖在治疗眼部、口腔和牙科以及鼻腔感染方面的潜力。最后我们对毒性问题和遗留的挑战及前景进行了总结。