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几丁质溶解、水凝胶形成及其生物医学应用概述。

Overview of chitin dissolution, hydrogel formation and its biomedical applications.

作者信息

Murugaiyan Kavipriya, Murali Vishnu Priya, Tamura Hiroshi, Furuike Tetsuya, Rangasamy Jayakumar

机构信息

Polymeric Biomaterials Lab, School of Nanosciences and Molecular Medicine, Amrita Vishwa Vidyapeetham, Kochi, India.

MicroPort Orthopedics Inc, Arlington, TN, USA.

出版信息

J Biomater Sci Polym Ed. 2025 Jun;36(9):1289-1320. doi: 10.1080/09205063.2024.2442181. Epub 2024 Dec 20.

Abstract

Chitin hydrogel and hydrogel-based products are some of the frequently reported biomaterials for biomedical applications. Yet there is a void in understanding chitin's dissolution mechanism and its most suitable solvent system(s). Chitin is a natural polysaccharide polymer which can be dissolved in solvents such as calcium chloride- methanol, sodium hydroxide/urea (NaOH/urea), lithium chloride diacetamide (LiCl/DMAc), ionic liquids and deep eutectic solvents. Among the alkali/urea dissolution systems such as NaOH/urea, KOH/urea, LiOH/urea for dissolution of chitin we will be focussing on NaOH-based system here for ease of comparison with the other systems. Chitin has been used for decades in the biomedical field; however, new solvent systems are still being explored even to this day to identify the most suitable chemical(s) for dissolving it. Chitin, due to its biocompatibility, allows us to use it for multifaceted purposes. Hence, it is important to consolidate the available studies for better understanding about the most sought-after biomaterial. This overview deeply delves into the mechanism of action of the existing solvent systems and highlights its merits and demerits. It discusses the rheological properties of the chitin gel from different solvent systems and puts forth the current biomedical applications of chitin gel in areas such as tissue engineering, drug delivery, biosensing, hemostasis and wound healing. It also outlines recent advances and highlights the potential gaps which need to be addressed in future studies.

摘要

几丁质水凝胶及基于水凝胶的产品是生物医学应用中一些经常被报道的生物材料。然而,在了解几丁质的溶解机制及其最合适的溶剂体系方面仍存在空白。几丁质是一种天然多糖聚合物,可溶解于氯化钙 - 甲醇、氢氧化钠/尿素(NaOH/尿素)、氯化锂二乙酰胺(LiCl/DMAc)、离子液体和低共熔溶剂等溶剂中。在用于溶解几丁质的碱/尿素溶解体系,如NaOH/尿素、KOH/尿素、LiOH/尿素中,为便于与其他体系进行比较,我们在此将重点关注基于NaOH的体系。几丁质在生物医学领域已使用了数十年;然而,即使在今天仍在探索新的溶剂体系,以确定最适合溶解它的化学物质。几丁质由于其生物相容性,使我们能够将其用于多方面的用途。因此,整合现有研究对于更好地了解这种备受追捧的生物材料很重要。本综述深入探讨了现有溶剂体系的作用机制,突出了其优点和缺点。它讨论了来自不同溶剂体系的几丁质凝胶的流变学性质,并阐述了几丁质凝胶在组织工程、药物递送、生物传感、止血和伤口愈合等领域的当前生物医学应用。它还概述了最近的进展,并突出了未来研究中需要解决的潜在差距。

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