Berglin Mattias, Cavanagh Jorunn Pauline, Caous Josefin Seth, Thakkar Balmukund Sureshkumar, Vasquez Jeddah Marie, Stensen Wenche, Lyvén Benny, Svendsen John-Sigurd, Svenson Johan
Department of Materials and Production, RISE Research Institutes of Sweden, Gothenburg, 413 46, Sweden.
Department of Chemistry and Molecular Biology, Gothenburg University, Gothenburg, 413 90, Sweden.
Macromol Biosci. 2024 Apr;24(4):e2300425. doi: 10.1002/mabi.202300425. Epub 2023 Dec 5.
Efficient, simple antibacterial materials to combat implant-associated infections are much in demand. Herein, the development of polyurethanes, both cross-linked thermoset and flexible and versatile thermoplastic, suitable for "click on demand" attachment of antibacterial compounds enabled via incorporation of an alkyne-containing diol monomer in the polymer backbone, is described. By employing different polyolic polytetrahydrofurans, isocyanates, and chain extenders, a robust and flexible material comparable to commercial thermoplastic polyurethane is prepared. A series of short synthetic antimicrobial peptides are designed, synthesized, and covalently attached in a single coupling step to generate a homogenous coating. The lead material is shown to be biocompatible and does not display any toxicity against either mouse fibroblasts or reconstructed human epidermis according to ISO and OECD guidelines. The repelling performance of the peptide-coated materials is illustrated against colonization and biofilm formation by Staphylococcus aureus and Staphylococcus epidermidis on coated plastic films and finally, on coated commercial central venous catheters employing LIVE/DEAD staining, confocal laser scanning microscopy, and bacterial counts. This study presents the successful development of a versatile and scalable polyurethane with the potential for use in the medical field to reduce the impact of bacterial biofilms.
高效、简单的抗菌材料对于对抗植入物相关感染的需求很大。本文描述了聚氨酯的开发,包括交联热固性聚氨酯以及灵活通用的热塑性聚氨酯,通过在聚合物主链中引入含炔二醇单体,实现了抗菌化合物的“按需点击”连接。通过使用不同的多元醇聚四氢呋喃、异氰酸酯和扩链剂,制备出了一种与商业热塑性聚氨酯相当的坚固且灵活的材料。设计、合成了一系列短的合成抗菌肽,并在单一偶联步骤中进行共价连接,以生成均匀的涂层。根据ISO和经合组织指南,主要材料显示出生物相容性,对小鼠成纤维细胞或重建的人表皮均无任何毒性。通过LIVE/DEAD染色、共聚焦激光扫描显微镜和细菌计数,展示了肽涂层材料对金黄色葡萄球菌和表皮葡萄球菌在涂层塑料薄膜上以及最终在涂层商业中心静脉导管上的定植和生物膜形成的排斥性能。本研究成功开发了一种通用且可扩展的聚氨酯,具有在医疗领域使用以减少细菌生物膜影响的潜力。