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一种具有抗菌和抗凝血功能的稳健混合电荷两性离子型聚氨酯涂层,用于介入性血液接触装置。

A robust mixed-charge zwitterionic polyurethane coating integrated with antibacterial and anticoagulant functions for interventional blood-contacting devices.

机构信息

College of Biomass Science and Engineering, Sichuan University, Chengdu 610065, China.

Department of Emergency, Yueyang Central Hospital, Yueyang 414100, China.

出版信息

J Mater Chem B. 2023 Aug 24;11(33):8020-8032. doi: 10.1039/d3tb01443f.

DOI:10.1039/d3tb01443f
PMID:37530181
Abstract

Antifouling coatings based on zwitterionic polymers have been widely applied for surface modification of interventional blood-contacting devices to combat thrombosis and infection. However, the weak adhesion stability of the zwitterionic coating to the device surface is still the key challenge. In this work, biocompatible mixed-charge zwitterionic polyurethane (MPU) polymers, that bear equal amounts of cationic quaternary amine groups and anionic carboxyl groups, were developed and further uniformly dip-coated onto a thermoplastic polyurethane (TPU) substrate with a commercial aliphatic isocyanate cross-linker (AIC). During the curing process, AIC not only crosslinks MPU chains into a polymer network but also reacts with hydroxyl groups of TPU to interlink the polymer network to the substrate, resulting in a cross-linking reinforced MPU coating (CMPU) with excellent mechanical robustness and adhesion strength. Taking advantage of the mixed-charge feature, the final zwitterionic CMPU coating exhibits both excellent antifouling and antibacterial activities against protein adsorption and bacterial growth, respectively, which is beneficial for effectively inhibiting the occurrence of infection. Moreover, anticoagulation studies show that CMPU-coated TPU catheters can also prevent the formation of blood clots in rabbit blood circuits without anticoagulants. Hence, the designed CMPU coating has immense potential to address thrombosis and infection for interventional blood-contacting devices.

摘要

基于两性离子聚合物的防污涂层已广泛应用于介入性血液接触装置的表面改性,以对抗血栓和感染。然而,两性离子涂层与装置表面的弱粘附稳定性仍然是关键挑战。在这项工作中,开发了具有生物相容性的混合电荷两性离子聚氨酯(MPU)聚合物,其带有等量的阳离子季铵基团和阴离子羧基基团,并进一步使用商业脂肪族异氰酸酯交联剂(AIC)均匀地浸涂到热塑性聚氨酯(TPU)基底上。在固化过程中,AIC 不仅将 MPU 链交联成聚合物网络,而且还与 TPU 的羟基反应,将聚合物网络与基底交联,从而得到具有优异机械强度和粘附强度的交联增强 MPU 涂层(CMPU)。利用混合电荷特性,最终的两性离子 CMPU 涂层分别表现出优异的抗蛋白吸附和抗细菌生长的防污和抗菌活性,这有利于有效抑制感染的发生。此外,抗凝研究表明,CMPU 涂层的 TPU 导管在没有抗凝剂的情况下也可以防止兔血回路中血栓的形成。因此,设计的 CMPU 涂层具有解决介入性血液接触装置中的血栓和感染问题的巨大潜力。

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