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Electron Beam Immobilization of Novel Antimicrobial Short Peptide Motifs Leads to Membrane Surfaces with Promising Antibacterial Properties

机译:电子束固定的新型抗菌短肽基序导致膜表面具有良好的抗菌性能。

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摘要

In this study, the efficacy of electron beam irradiation versus chemical coupling for yielding polyethersulfone (PES) membranes with antibacterial properties was investigated. For the surface coating, a recently discovered lead compound, IL-KKA, comprising a short peptide sequence functionalized with imidazolium groups, was used. For better integration within the membrane, several novel variants of IL-KKA were generated. Membrane immobilization was achieved using different doses of electron beam irradiation and NHS/EDC chemical coupling. Physicochemical characterization of the coated membranes was performed by water contact angle measurements, X-ray photoelectron spectroscopy, and scanning electron microscopy. Our results show that electron beam irradiation is as effective and gentle as chemical coupling using the NHS/EDC method. Moreover, it was demonstrated that the obtained membranes exhibit promising antibacterial activity against B. subtilis. In summary, the technique presented herein might be promising as a template for developing future anti-biofilm devices.
机译:在这项研究中,研究了电子束辐照与化学偶联对产生具有抗菌性能的聚醚砜(PES)膜的功效。对于表面涂层,使用最近发现的先导化合物IL-KKA,其包含被咪唑鎓基团官能化的短肽序列。为了更好地整合到膜中,产生了几种新的IL-KKA变体。使用不同剂量的电子束辐照和NHS / EDC化学偶联可实现膜固定。通过水接触角测量,X射线光电子能谱和扫描电子显微镜对涂覆的膜进行物理化学表征。我们的结果表明,使用NHS / EDC方法进行电子束辐照与化学偶联一样有效和温和。此外,证明了所获得的膜显示出对枯草芽孢杆菌的有希望的抗菌活性。总之,本文介绍的技术有望作为开发未来抗生物膜装置的模板。

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