Norouzalinia Fatemeh, Asadpour Leila, Mokhtary Masoud
Department of Biology, Rasht Branch, Islamic Azad University, Rasht, Iran.
Department of Chemistry, Rasht Branch, Islamic Azad University, Rasht, Iran.
Int Microbiol. 2025 Mar;28(3):563-573. doi: 10.1007/s10123-024-00560-4. Epub 2024 Aug 6.
The spread of microbial resistance is a threat to public health. In this study, the anti-microbial, anti-biofilm, and efflux pump inhibitory effects of ellagic acid-loaded magnetic nanoparticles (FeONPs@EA) against beta-lactamase producing Escherichia coli isolates have been investigated. The effects of FeO NPs@EA on the growth inhibition of E. coli isolates were determined by disc diffusion method and determining the minimum inhibitory concentration was done using broth micro-dilution method. The anti-biofilm effect of nanoparticles was investigated using the microplate method. The efflux pump inhibitory effect of nanoparticles was investigated using cart-wheel method and by investigating the effect of nanoparticles on acrB and tolC genes expression levels. FeO NPs@EA showed anti-bacterial effects against test bacteria, and the MIC of these nanoparticles varied from 0.19 to 1.56 mg/mL. These nanoparticles caused a 43-62% reduction in biofilm formation of test bacteria compared to control. Furthermore, efflux pump inhibitory effect of these nanoparticles was confirmed at a concentration of 1/8 MIC, and the expression of acrB and tolC genes decreased in bacteria treated with 1/4 MIC FeO NPs@EA. According to the results, the use of nanoparticles containing ellagic acid can provide a basis for the development of new treatments against drug-resistant E. coli. This substance may improve the concentration of antibiotics in the bacterial cell and increase their effectiveness by inhibiting the efflux in E. coli isolates.
微生物耐药性的传播对公共卫生构成威胁。在本研究中,已对负载鞣花酸的磁性纳米颗粒(FeONPs@EA)对产β-内酰胺酶的大肠杆菌分离株的抗菌、抗生物膜和外排泵抑制作用进行了研究。通过纸片扩散法测定FeO NPs@EA对大肠杆菌分离株生长抑制的影响,并使用肉汤微量稀释法确定最低抑菌浓度。使用微孔板法研究纳米颗粒的抗生物膜作用。使用车轮法并通过研究纳米颗粒对acrB和tolC基因表达水平的影响来研究纳米颗粒的外排泵抑制作用。FeO NPs@EA对受试细菌显示出抗菌作用,这些纳米颗粒的最低抑菌浓度在0.19至1.56 mg/mL之间。与对照相比,这些纳米颗粒使受试细菌的生物膜形成减少了43%-62%。此外,在1/8最低抑菌浓度下证实了这些纳米颗粒的外排泵抑制作用,在用1/4 MIC FeO NPs@EA处理的细菌中,acrB和tolC基因的表达下降。根据结果,使用含鞣花酸的纳米颗粒可为开发针对耐药大肠杆菌的新疗法提供依据。该物质可能会提高抗生素在细菌细胞中的浓度,并通过抑制大肠杆菌分离株中的外排作用来提高其有效性。