Department of Biochemistry and Biotechnology, Poznań University of Life Sciences, Dojazd 11, 60-632 Poznan, Poland.
Christian Doppler Laboratory for Monitoring of Microbial Contaminants, Unit for Food Microbiology, Department of Veterinary Public Health and Food Science, University of Veterinary Medicine, 1210 Vienna, Austria.
Int J Mol Sci. 2023 Jan 14;24(2):1686. doi: 10.3390/ijms24021686.
Witnessed by the ongoing spread of antimicrobial resistant bacteria as well as the recent global pandemic of the SARS-CoV-2 virus, the development of new disinfection strategies is of great importance, and novel substance classes as effective antimicrobials and virucides are urgently needed. Ionic liquids (ILs), low-melting salts, have been already recognized as efficient antimicrobial agents with prospects for antiviral potential. In this study, we examined the antiviral activity of 12 morpholinium based herbicidal ionic liquids with a tripartite test system, including enzyme inhibition tests, virucidal activity determination against five model viruses and activity against five bacterial species. The antimicrobial and enzymatic tests confirmed that the inhibiting activity of ILs corresponds with the number of long alkyl side chains and that [DecMor] based ILs are promising candidates as novel antimicrobials. The virucidal tests showed that ILs antiviral activity depends on the type and structure of the virus, revealing enveloped Phi6 phage as highly susceptible to the ILs action, while the non-enveloped phages PRD1 and MS2 proved completely resistant to ionic liquids. Furthermore, a comparison of results obtained for P100 and P001 phages demonstrated for the first time that the susceptibility of viruses to ionic liquids can be dependent on differences in the phage tail structure.
鉴于抗菌耐药菌的持续传播以及最近 SARS-CoV-2 病毒在全球范围内的流行,开发新的消毒策略非常重要,急需开发具有新型有效抗菌和抗病毒特性的物质类别。离子液体(ILs)和低共熔盐已被确认为有效的抗菌剂,具有抗病毒的潜力。在这项研究中,我们使用三重测试系统研究了 12 种基于吗啉的除草离子液体的抗病毒活性,包括酶抑制测试、针对五种模型病毒的病毒杀灭活性测定和对五种细菌的活性测定。抗菌和酶测试证实,ILs 的抑制活性与长烷基侧链的数量有关,[DecMor]基 ILs 是作为新型抗菌剂的有前途的候选物。病毒杀灭测试表明,ILs 的抗病毒活性取决于病毒的类型和结构,表明包膜 Phi6 噬菌体对 ILs 的作用高度敏感,而无包膜噬菌体 PRD1 和 MS2 则对离子液体完全具有抗性。此外,对 P100 和 P001 噬菌体的结果进行比较,首次证明病毒对离子液体的敏感性可能取决于噬菌体尾部结构的差异。