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Lysine-Grafted MCM-41 Silica as An Antibacterial Biomaterial

机译:赖氨酸接枝的MCM-41二氧化硅作为抗菌生物材料

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摘要

Abstract: A facile strategy for zwitterionization of bioceramics based on direct incorporation of L-lysine amino acid via the ε-amino group onto mesoporous MCM-41 materials is proposed. FTIR studies of lysine-grafted MCM-41 (MCM-LYS) showed simultaneously bands at 3080 and 1540 cm−1 and bands at 1625 and 1415 cm−1 corresponding to -NH3+/COO− pairs, demonstrating the incorporation of the amino acid on the material surface keeping its zwitterionic character. Both elemental and thermogravimetric analyses showed that the amount of grafted lysine was 8 wt % based on the bioceramic total weight. Moreover, MCM-LYS material exhibited a reduction of adhesion of S. aureus and E. coli bacteria in 33 and 50%, respectively at physiological pH, as compared with pristine MCM-41. Biofilm studies onto surfaces showed that lysine functionalization elicited a reduction of the area covered by S. aureus biofilm from 42% to only 5% (88%). This research shows a simple and effective approach to chemically modify bioceramics using single amino acids that provide zwitterionic functionality, useful to develop new biomaterials able to resist bacterial adhesion.
机译:摘要:提出了一种基于ε-氨基直接将L-赖氨酸氨基酸掺入介孔MCM-41材料中的生物陶瓷两性离子化的简便策略。赖氨酸接枝的MCM-41(MCM-LYS)的FTIR研究同时显示了对应于-NH3 + / COO-对的3080和1540 cm-1处的谱带以及1625和1415 cm-1处的谱带,表明氨基酸在材料表面保持其两性离子特性。元素分析和热重分析均显示,基于生物陶瓷总重量,赖氨酸的接枝量为8重量%。而且,与原始MCM-41相比,MCM-LYS材料在生理pH下分别显示金黄色葡萄球菌和大肠杆菌细菌的粘附减少33%和50%。在表面上进行生物膜研究表明,赖氨酸功能化导致金黄色葡萄球菌生物膜覆盖的面积从42%减少到仅5%(88%)。这项研究显示了一种简单有效的方法,可使用提供两性离子官能团的单一氨基酸对生物陶瓷进行化学修饰,可用于开发能够抵抗细菌粘附的新型生物材料。

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