Department of Chemistry, Institute for Advanced Studies in Basic Sciences (IASBS), Zanjan 45137-66731, Iran.
Department of Microbiology and Virology, School of Medicine, Zanjan University of Medical Sciences, Zanjan 45139-56111, Iran.
ACS Appl Bio Mater. 2024 Mar 18;7(3):1558-1568. doi: 10.1021/acsabm.3c01040. Epub 2024 Feb 19.
Ionic liquid (IL) cationic species have recently captivated the attention of pharmacists, biochemists, and biomedical scientists as promising antibacterial agents to deal with the multidrug resistance bacteria crisis. The structure and functional groups of ILs influence their physiochemical properties and biological activities. However, a comprehensive study is required to fully understand the details of the antibacterial activity of ILs carrying various functional groups. Herein, dicationic ILs (DCILs) are reported based on imidazolium rings as efficient antibacterial agents. The DCILs carried various functionalities such as 2-hydroxybutyl (DCIL-1), 2-hydroxy-3-isopropoxypropyl (DCIL-2), 2-hydroxy-3-(methacryloyloxy)propyl (DCIL-3), 2-hydroxy-2-phenylethyl (DCIL-4), and 2-hydroxy-3-phenoxypropyl (DCIL-5). The structure-antibacterial activity relationships of the DCILs against Gram-positive () and Gram-negative bacteria ( and ) were comprehensively studied through antibacterial tests, morphology analysis, and adhesion tests. The experimental assays revealed an antibacterial efficacy order of DCIL-5 > DCIL-1 > DCIL-4 > DCIL-2 > DCIL-3. The all-atom molecular dynamics (MD) simulation showed a deep permeation of the hydrophobic -OPh functional group of DCIL-5 through the membrane model in agreement with the experimental observations. Current findings assist scientists in designing new task-specific DCILs for effective interactions with biological membranes for different applications.
离子液体(IL)阳离子最近引起了药剂师、生物化学家以及生物医学科学家的关注,因为它们有望成为解决多药耐药菌危机的有前途的抗菌剂。IL 的结构和官能团影响其物理化学性质和生物活性。然而,需要进行全面的研究才能充分了解具有各种官能团的 IL 的抗菌活性的细节。在此,报告了基于咪唑环的二阳离子 IL(DCIL)作为有效的抗菌剂。DCIL 携带各种官能团,如 2-羟丁基(DCIL-1)、2-羟-3-异丙氧基丙基(DCIL-2)、2-羟-3-(甲基丙烯酰氧基)丙基(DCIL-3)、2-羟-2-苯乙基(DCIL-4)和 2-羟-3-苯氧基丙基(DCIL-5)。通过抗菌试验、形态分析和粘附试验,全面研究了 DCIL 对革兰氏阳性菌()和革兰氏阴性菌(和)的结构-抗菌活性关系。实验结果表明,DCIL-5>DCIL-1>DCIL-4>DCIL-2>DCIL-3 具有抗菌功效顺序。全原子分子动力学(MD)模拟表明,DCIL-5 的疏水性-OPh 官能团能够深入穿透 膜模型,这与实验观察结果一致。目前的研究结果有助于科学家设计新的任务特异性 DCIL,以与不同应用的生物膜进行有效相互作用。