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壳聚糖在等离子体处理聚合物上的沉积——综述

Deposition of Chitosan on Plasma-Treated Polymers-A Review.

作者信息

Vesel Alenka

机构信息

Department of Surface Engineering, Jozef Stefan Institute, Jamova cesta 39, 1000 Ljubljana, Slovenia.

出版信息

Polymers (Basel). 2023 Feb 23;15(5):1109. doi: 10.3390/polym15051109.

Abstract

Materials for biomedical applications often need to be coated to enhance their performance, such as their biocompatibility, antibacterial, antioxidant, and anti-inflammatory properties, or to assist the regeneration process and influence cell adhesion. Among naturally available substances, chitosan meets the above criteria. Most synthetic polymer materials do not enable the immobilization of the chitosan film. Therefore, their surface should be altered to ensure the interaction between the surface functional groups and the amino or hydroxyl groups in the chitosan chain. Plasma treatment can provide an effective solution to this problem. This work aims to review plasma methods for surface modification of polymers for improved chitosan immobilization. The obtained surface finish is explained in view of the different mechanisms involved in treating polymers with reactive plasma species. The reviewed literature showed that researchers usually use two different approaches: direct immobilization of chitosan on the plasma-treated surface or indirect immobilization by additional chemistry and coupling agents, which are also reviewed. Although plasma treatment leads to remarkably improved surface wettability, this was not the case for chitosan-coated samples, where a wide range of wettability was reported ranging from almost superhydrophilic to hydrophobic, which may have a negative effect on the formation of chitosan-based hydrogels.

摘要

生物医学应用材料通常需要进行涂层处理,以提高其性能,如生物相容性、抗菌性、抗氧化性和抗炎性,或协助再生过程并影响细胞粘附。在天然可用物质中,壳聚糖符合上述标准。大多数合成聚合物材料无法实现壳聚糖膜的固定化。因此,需要改变它们的表面,以确保表面官能团与壳聚糖链中的氨基或羟基之间的相互作用。等离子体处理可以为这个问题提供有效的解决方案。这项工作旨在综述用于聚合物表面改性以改善壳聚糖固定化的等离子体方法。鉴于用反应性等离子体物种处理聚合物所涉及的不同机制,对获得的表面处理效果进行了解释。综述的文献表明,研究人员通常使用两种不同的方法:将壳聚糖直接固定在经等离子体处理的表面上,或通过额外的化学方法和偶联剂进行间接固定,本文也对这些方法进行了综述。尽管等离子体处理可显著提高表面润湿性,但壳聚糖涂层样品并非如此,据报道其润湿性范围很广,从几乎超亲水到疏水不等,这可能会对基于壳聚糖的水凝胶的形成产生负面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48cf/10007447/e514c7f6c4b6/polymers-15-01109-g001.jpg

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