首页> 外文期刊>ACS applied materials & interfaces >Structure-Antibacterial Activity Relationships of Imidazolium-Type Ionic Liquid Monomers, Poly(ionic liquids) and Poly(ionic liquid) Membranes: Effect of Alkyl Chain Length and Cations
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Structure-Antibacterial Activity Relationships of Imidazolium-Type Ionic Liquid Monomers, Poly(ionic liquids) and Poly(ionic liquid) Membranes: Effect of Alkyl Chain Length and Cations

机译:咪唑型离子液体单体,聚离子液体和聚离子液体膜的结构-抗菌活性关系:烷基链长和阳离子的影响

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摘要

The structure antibacterial activity relationship between the small molecular compounds and polymers are still elusive. Here, imidazolium-type ionic liquid (IL) monomers and their corresponding poly(ionic liquids) (PILs) and poly(ionic liquid) membranes were synthesized. The effect of chemical structure, including carbon chain length of substitution at the N3 position and charge density of cations (mono- or bis-imidazolium) on the antimicrobial activities against both Escherichia coli (E. coli) and Staphylococcus aureus (S. aureus) was investigated by determination of minimum inhibitory concentration (MIC). The antibacterial activities of both ILs and PILs were improved with the increase of the alkyl chain length and higher charge density (bis-cations) of imidazolium cations. Moreover, PILs exhibited lower MIC values relative to the IL monomers. However, the antibacterial activities of PIL membranes showed no correlation to those of their analogous small molecule IL monomers and PILs, which increased with the charge density (bis-cations) while decreasing with the increase of alkyl chain length. The results indicated that antibacterial property studies on small molecules and homopolymers may not provide a solid basis for evaluating that in corresponding polymer membranes.
机译:小分子化合物和聚合物之间的结构抗菌活性关系仍然难以捉摸。在此,合成了咪唑型离子液体(IL)单体及其相应的聚离子液体(PIL)和聚离子液体膜。化学结构的影响,包括N3位置的碳链取代长度和阳离子(单或双咪唑鎓)的电荷密度对大肠杆菌(E. coli)和金黄色葡萄球菌(S. aureus)的抗菌活性的影响通过确定最小抑菌浓度(MIC)进行研究。 ILs和PILs的抗菌活性都随着烷基链长度的增加和咪唑鎓阳离子的更高电荷密度(双阳离子)而提高。而且,相对于IL单体,PIL显示出较低的MIC值。但是,PIL膜的抗菌活性与其类似的小分子IL单体和PIL并没有相关性,它们随电荷密度(双阳离子)增加而随烷基链长度的增加而降低。结果表明,对小分子和均聚物的抗菌性能研究可能无法为评估相应聚合物膜中的抗菌性能提供坚实的基础。

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