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壳聚糖基席夫碱的应用综述。

A review on applications of chitosan-based Schiff bases.

机构信息

Centre for Scientific and Applied Research, PSN College of Engineering and Technology (Autonomous), Tirunelveli 627152, Tamil Nadu, India.

Department of Chemistry, Kamaraj College, Thoothukudi 628003, Tamil Nadu, India.

出版信息

Int J Biol Macromol. 2019 May 15;129:615-633. doi: 10.1016/j.ijbiomac.2019.02.047. Epub 2019 Feb 10.

Abstract

Biopolymers have become very attractive as they are degradable, biocompatible, non-toxic and renewable. Due to the intrinsic reactive amino groups, chitosan is vibrant in the midst of other biopolymers. Using the versatility of these amino groups, various structural modifications have been accomplished on chitosan through certain chemical reactions. Chemical modification of chitosan via imine functionalization (RR'CNR″; R: alkyl/aryl, R': H/alkyl/aryl and R″: chitosan ring) is significant as it recommends the resultant chitosan-based Schiff bases (CSBs) for the important applications in the fields like biology, catalysis, sensors, water treatment, etc. CSBs are usually synthesized by the Schiff condensation reaction between chitosan's amino groups and carbonyl compounds with the removal of water molecules. In this review, we first introduce the available synthetic approaches for the preparation of CSBs. Then, we discuss the biological applications of CSBs including antimicrobial activity, anticancer activity, drug carrier ability, antioxidant activity and tissue engineering capacity. Successively, the applications of CSBs in other fields such as catalysis, adsorption and sensors are demonstrated.

摘要

生物聚合物由于其可降解性、生物相容性、无毒和可再生性而变得非常有吸引力。由于其内在的反应性氨基,壳聚糖在其他生物聚合物中非常活跃。通过某些化学反应,可以在壳聚糖上完成各种结构修饰,利用这些氨基的多功能性。通过亚胺官能化(RR'CNR″;R:烷基/芳基,R':H/烷基/芳基和 R″:壳聚糖环)对壳聚糖进行化学修饰非常重要,因为它推荐了基于壳聚糖的席夫碱(CSB)在生物学、催化、传感器、水处理等领域的重要应用。CSB 通常通过壳聚糖的氨基与羰基化合物之间的席夫缩合反应合成,同时去除水分子。在这篇综述中,我们首先介绍了 CSB 的制备的现有合成方法。然后,我们讨论了 CSB 的生物应用,包括抗菌活性、抗癌活性、药物载体能力、抗氧化活性和组织工程能力。随后,展示了 CSB 在催化、吸附和传感器等其他领域的应用。

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