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用于气管导管的高分子涂层的润滑性、耐磨性和抗生物污损性。

Lubricity, wear prevention, and anti-biofouling properties of macromolecular coatings for endotracheal tubes.

机构信息

TUM School of Engineering and Design Department of Materials Engineering, Technical University of Munich (TUM), Boltzmannstraße 15, 85748 Garching, Germany.

Center for Protein Assemblies (CPA) and Munich Institute of Biomedical Engineering (MIBE), Technical University of Munich (TUM), Ernst-Otto-Fischer Straße 8, 85748 Garching, Germany.

出版信息

Biomater Sci. 2024 Feb 27;12(5):1228-1238. doi: 10.1039/d3bm01985c.

Abstract

Macromolecular coatings can improve the surface properties of many medical devices by enhancing their wetting behavior, tribological performance, and anti-biofouling properties - and covalent coatings produced from mucin glycoproteins have been shown to be very powerful in all those aspects. However, obtaining highly functional mucin glycoproteins is, at the moment, still a time-consuming process, which renders mucins rather expensive compared to other biomacromolecules. Here, we study a set of commercially available macromolecules that have the potential of substituting mucins in coatings for endotracheal tubes (ETTs). We present an overview of the different properties these macromolecular coatings establish on the ETT surface and whether they withstand storage or sterilization processes. Our study pinpoints several strategies of how to enhance the lubricity of ETTs by applying macromolecular coatings but also demonstrates the limited anti-biofouling abilities of well-established macromolecules such as hyaluronic acid, polyethylene glycol, and dextran. Based on the obtained results, we discuss to what extent those coatings can be considered equivalent alternatives to mucin coatings for applications on medical devices - their applicability does not have to be limited to ETTs, but could be broadened to catheters and endoscopes as well.

摘要

高分子涂层可以通过增强润湿性、摩擦学性能和抗生物污染性能来改善许多医疗器械的表面性能,并且已经证明,基于粘蛋白糖蛋白的共价涂层在所有这些方面都非常有效。然而,获得高功能的粘蛋白糖蛋白目前仍然是一个耗时的过程,这使得粘蛋白与其他生物大分子相比价格昂贵。在这里,我们研究了一组具有替代气管内管(ETT)涂层中粘蛋白潜力的市售高分子。我们概述了这些高分子涂层在 ETT 表面建立的不同性质,以及它们是否能承受储存或灭菌过程。我们的研究确定了几种通过应用高分子涂层来增强 ETT 润滑性的策略,但也证明了像透明质酸、聚乙二醇和葡聚糖等成熟的高分子的有限抗生物污染能力。基于获得的结果,我们讨论了这些涂层在多大程度上可以被认为是粘蛋白涂层在医疗器械应用中的等效替代品——它们的适用性不必仅限于 ETT,也可以扩展到导管和内窥镜。

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