Jiangsu Key Laboratory of Advanced Functional Polymer Design and Application, Department of Polymer Science and Engineering, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, China.
Department of Anesthesiology and Critical Care Medicine, Zhongshan Hospital, Fudan University, Shanghai 200032, China.
Acta Biomater. 2019 Oct 1;97:247-259. doi: 10.1016/j.actbio.2019.07.039. Epub 2019 Jul 25.
A series of aggregation-induced emission (AIE)-based imidazolium-type ionic liquids (ILs) were designed and synthesized for bacterial killing and imaging, cell labeling, and bacterial detection in blood cells. The AIE-based ILs showed antibacterial activities against both Escherichia coli and Staphylococcus aureus. The carbon chain length of substitution at the N3 position of the imidazolium cations highly affects the antibacterial properties of ILs. Owing to their AIE characteristics, the ILs could selectively capture fluorescence image of dead bacteria while killing the bacteria. The fluorescence intensity varied with the concentration of bacteria, indicating that AIE-based ILs has potential as an antibacterial material and an efficient probe for bacterial viability assay. In addition, the synthesized AIE-based ILs exhibit relatively low cytotoxicity and hemolysis rate and therefore potential for cell labeling, as well as bacterial detection in blood cells. STATEMENT OF SIGNIFICANCE: Bacteria are ubiquitous, especially the pathogenic bacteria, which pose a serious threat to human health. There is an urgent need for materials with efficient antibacterial properties and biocompatibility and without causing drug resistance. In this work, we synthesized a series of aggregation-induced emission (AIE)-doped imidazolium type ionic liquids (ILs) with multifunction potential of bacterial killing and imaging, cell labeling, and detection of bacteria from blood cells. The synthesized AIE-based ILs can image dead bacteria at the same time of killing these bacteria, which can avoid the fluorescent dyeing process. Simultaneously, the fluorescent imaging of dead bacteria can be distinguished by the naked eye, and the fluorescence intensity from the AIE-based ILs varied with the concentration of bacteria. In addition, the AIE-based ILs exhibit relatively low cytotoxicity and hemolysis rate and therefore potential for cell labeling as well as detection of bacteria from red blood cell suspension.
一系列基于聚集诱导发光(AIE)的咪唑型离子液体(ILs)被设计并合成用于杀菌和成像、细胞标记以及血液细胞中的细菌检测。基于 AIE 的 ILs 对大肠杆菌和金黄色葡萄球菌均表现出抗菌活性。咪唑阳离子 N3 位取代基的碳链长度高度影响 ILs 的抗菌性能。由于其 AIE 特性,ILs 可以选择性地捕获死菌的荧光图像,同时杀死细菌。荧光强度随细菌浓度的变化而变化,表明基于 AIE 的 ILs 具有作为抗菌材料和细菌活力测定的有效探针的潜力。此外,所合成的基于 AIE 的 ILs 表现出相对较低的细胞毒性和溶血率,因此具有细胞标记以及血液细胞中细菌检测的潜力。
意义陈述:细菌无处不在,尤其是致病性细菌,对人类健康构成严重威胁。迫切需要具有高效抗菌性能和生物相容性且不会引起耐药性的材料。在这项工作中,我们合成了一系列具有多功能的基于聚集诱导发光(AIE)的掺杂咪唑型离子液体(ILs),具有杀菌和成像、细胞标记以及从血液细胞中检测细菌的潜力。所合成的基于 AIE 的 ILs 可以在杀死这些细菌的同时对死菌进行成像,从而避免了荧光染色过程。同时,通过肉眼可以区分死菌的荧光成像,并且基于 AIE 的 ILs 的荧光强度随细菌浓度的变化而变化。此外,基于 AIE 的 ILs 表现出相对较低的细胞毒性和溶血率,因此具有细胞标记以及从红细胞悬浮液中检测细菌的潜力。
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