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Synthesis and micro-/nanostructuring of surface-attached crosslinked antimicrobial and/or antibiofouling polymer networks

机译:表面连接的交联抗微生物和/或抗生物污垢聚合物网络的合成和微/纳米结构

摘要

The present invention relates to substrates comprising a crosslinked network of covalently attached antimicrobial and/or antibiofouling polymers. The crosslinked network of antimicrobial and/or antibiofouling polymers acts highly efficiently against pathogens, e.g. bacteria and fungi. Both the antimicrobial and the antibiofouling cross-linked polymer networks are preferably better resistant to mechanical damage than simple surface-immobilized polymer monolayers. The antimicrobial and/or antibiofouling polymers of the crosslinked network are preferably obtained by ring opening metathesis polymerization (ROMP) and exhibit a molecular weight of more than 1,000 g mol-1, preferably of more than 10,000 or even 100,000 g mol-1. The crosslinked network of antimicrobial and/or antibiofouling polymers is preferably covalently attached to the surface of a substrate, e.g. an implant, a medical device, medical equipment or a (tissue-supporting) biomaterial, etc. The present invention is also directed to uses of crosslinked networks of antimicrobial and/or antibiofouling polymers as defined herein, e.g. for coating a surface of a substrate, and to methods therefore.
机译:本发明涉及包含共价连接的抗微生物和/或抗污垢聚合物的交联网络的基质。抗菌和/或抗污垢聚合物的交联网络对病原体(例如,细菌和真菌。与简单的表面固定的聚合物单层相比,抗微生物和抗生物结垢的交联聚合物网络都优选更好地抵抗机械损伤。交联网络的抗微生物和/或抗污垢聚合物优选通过开环复分解聚合(ROMP)获得,并且表现出大于1,000g mol-1,优选大于10,000或什至100,000g mol-1的分子量。抗微生物和/或抗污垢聚合物的交联网络优选共价附于底物的表面,例如表面。本发明还涉及如本文所定义的抗微生物和/或抗污垢聚合物的交联网络的用途。用于涂覆基底表面的方法及其方法。

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