基于阳离子机制并由壳聚糖和叠氮肝素功能化的非溶性抗菌聚氨酯。

Shuaishuai Li, Liang Zhang, Yicheng Liu, Enke Zhang, Xinyu Li, Zichi Chen, Zihan Yu, Haoyuan Zhou, Ying Li
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引用次数: 0

摘要

如今,具有良好持久抗菌性能的医用聚氨酯因其可避免反复更换介入材料和减轻患者痛苦而受到越来越多的关注。本论文通过将叠氮壳聚糖和叠氮肝素光接枝到聚氨酯(PU)中,制备了基于阳离子抗菌机制的非溶性抗菌聚氨酯(NAPU)。壳聚糖叠氮化物中的 -NH3+ 可吸收细菌,抑制和破坏细菌的移动性和结构。叠氮肝素可阻止阳离子穿透细菌膜,抑制细菌生长。结果表明,壳聚糖叠氮化物和肝素叠氮化物成功接枝到聚氨酯中。抗菌率最高达 92.07%,细胞毒性等级为 0-1(RGR 标准),水接触角为 60°。抗拉强度高达 23.91 兆帕,适合用作医用材料。带有长效涂层的 NAPU 既具有抗菌性能,又具有持久性,可以解决医用导管的长期使用问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non-soluble antibacterial polyurethane based on cation mechanism and functionalized by chitosan and heparin azide.

Nowadays, medical polyurethanes with favorable and durable antibacterial properties received more attention, because of avoiding repeated replacement of interventional materials and reducing patients' pain. In this thesis, non-soluble antibacterial polyurethane (NAPU) based on cation antibacterial mechanism was prepared by photo-grafting chitosan azide and heparin azide into polyurethane (PU). -NH3+of chitosan azide absorbed bacteria, inhibiting and breaking their mobility and structures. Heparin azide prevented cations from penetrating bacteria's membranes and inhibited their growth. The results showed that chitosan azide and heparin azide were successfully grafted into PU. The highest antibacterial rate was 92.07%, cytotoxicity grade ranging from 0-1 (RGR standard) and water contact angle exhibiting 60°, attributing to cation antibacterial effect and -OH existing. Tensile strength was up to 23.91 MPa and was suitable for using as medical materials. NAPU with long-lasting coating both possessed antibacterial properties and persistence, which can solve the problem of medical catheters' long-term using.

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