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用于尿道导管的壳聚糖涂层超亲水性聚氯乙烯聚合物基材的粘附性和生物相容性的改善

Improved Adhesion and Biocompatibility of Chitosan-Coated Super-Hydrophilic PVC Polymer Substrates for Urothelial Catheters.

作者信息

Vesel Alenka, Motaln Helena, Mozetič Miran, Lojen Dane, Recek Nina

机构信息

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

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

出版信息

Int J Mol Sci. 2025 Feb 27;26(5):2128. doi: 10.3390/ijms26052128.

Abstract

Chitosan is a water-soluble polysaccharide with good adherence to negatively charged surfaces and reported antimicrobial and anti-inflammatory properties. Coating the surfaces of medical devices with chitosan is a promising strategy for harnessing these benefits. However, the surface properties of commercial polymers need to be altered to enable the bonding of thin chitosan films. In this study, the adhesion of chitosan onto plasma-treated polyvinyl chloride (PVC) and the metabolic activity of urothelial cells on chitosan-coated medical-grade PVC used for the synthesis of urinary catheters were evaluated. To improve the adhesion of chitosan onto the PVC catheters, PVC samples were made "super-hydrophilic". PVC substrates were briefly treated with a powerful hydrogen plasma and weakly ionised oxygen plasma afterglow to obtain a chlorine-free surface film, which was rich in oxygen functional groups, followed by incubation of the plasma-treated substrates in an aqueous solution of chitosan. Then, urothelial RT4 cells were seeded on the treated and untreated PVC substrates, and their metabolic activity, confluency, and cell morphology were examined. X-ray photoelectron spectroscopy was used to measure the nitrogen concentration, which corresponded to the chitosan concentration on the substrate. The results showed that the substrates were uniformly covered by a thin layer of chitosan only on plasma-treated surfaces and not on untreated surfaces. Moreover, the chitosan coating provided a stimulated environment for cell adhesion and growth. In conclusion, the chitosan-coated super-hydrophilic PVC substrate shows potential to improve the overall performance and safety of medical devices such as urinary catheters.

摘要

壳聚糖是一种水溶性多糖,对带负电荷的表面具有良好的粘附性,且具有抗菌和抗炎特性。用壳聚糖包覆医疗器械表面是利用这些益处的一种有前景的策略。然而,需要改变商业聚合物的表面性质以实现薄壳聚糖膜的结合。在本研究中,评估了壳聚糖在经等离子体处理的聚氯乙烯(PVC)上的粘附情况以及尿路上皮细胞在用于合成导尿管的壳聚糖包覆的医用级PVC上的代谢活性。为了提高壳聚糖在PVC导管上的粘附性,将PVC样品制成“超亲水”的。对PVC基材先用强力氢等离子体进行短暂处理,然后用弱电离氧等离子体余辉处理,以获得富含氧官能团的无氯表面膜,随后将经等离子体处理的基材在壳聚糖水溶液中孵育。然后,将尿路上皮RT4细胞接种在处理过和未处理过的PVC基材上,并检测其代谢活性、汇合度和细胞形态。利用X射线光电子能谱测量氮浓度,其对应于基材上的壳聚糖浓度。结果表明,仅在经等离子体处理的表面上,基材被一层薄壳聚糖均匀覆盖,而在未处理的表面上则没有。此外,壳聚糖涂层为细胞粘附和生长提供了适宜的环境。总之,壳聚糖包覆的超亲水PVC基材显示出改善诸如导尿管等医疗器械的整体性能和安全性的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c04e/11900446/4a285aaa09fe/ijms-26-02128-g001.jpg

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