Działak Paweł, Syczewski Marcin Daniel, Błachowski Artur, Kornaus Kamil, Bajda Tomasz, Zych Łukasz, Osial Magdalena, Borkowski Andrzej
Faculty of Geology, Geophysics and Environmental Protection, AGH University of Science and Technology Al. Mickiewicza 30 30-059 Krakow Poland
Helmholtz Centre Potsdam, GFZ German Research Centre for Geosciences D-14473 Potsdam Germany.
RSC Adv. 2023 Jan 4;13(2):926-936. doi: 10.1039/d2ra06661k. eCollection 2023 Jan 3.
Magnetic nanoparticles (MNPs) have recently been a point of interest for many researchers due to their properties. However, the studies on the influence of bacteriophages on the synthesis of MNPs seem to be lacking. Furthermore, bacteriophage-modified MNPs have not been combined with -alkyl quaternary ammonium ionic liquid precursors (QAS). In this study, the aim was to assess the influence of two distinctly different bacteriophages ( phage P1 and phage Φ6) on MNPs synthesis in the presence or absence of QAS. Synthesized MNPs have been characterized with X-ray diffraction (XRD) and Mössbauer spectroscopy in terms of changes in the crystallographic structure; scanning electron microscopy (SEM) for changes in the morphology; and ζ-potential. Moreover, the sorption parameters and the loss of viability of bacteria that interacted with MNPs have been determined. The sorption of bacteria differs significantly among the tested samples. Furthermore, the viability of the bacteria adsorbed on MNPs varies in the presence of QAS, depending on the length of the -alkyl chain. The study has revealed that MNPs can be bound with bacteriophages. Mössbauer spectroscopy has also revealed the probable influence of bacteriophages on the formation of crystals. However, these phenomena require further studies.
磁性纳米颗粒(MNPs)因其特性最近成为许多研究人员关注的焦点。然而,关于噬菌体对MNPs合成影响的研究似乎较为缺乏。此外,噬菌体修饰的MNPs尚未与 - 烷基季铵离子液体前体(QAS)结合。在本研究中,目的是评估两种截然不同的噬菌体(噬菌体P1和噬菌体Φ6)在有或无QAS存在的情况下对MNPs合成的影响。合成的MNPs已通过X射线衍射(XRD)和穆斯堡尔光谱对晶体结构变化进行表征;通过扫描电子显微镜(SEM)对形态变化进行表征;并测定了ζ电位。此外,还确定了与MNPs相互作用的细菌的吸附参数和活力损失。测试样品之间细菌的吸附存在显著差异。此外,在QAS存在的情况下,吸附在MNPs上的细菌活力因 - 烷基链长度而异。该研究表明MNPs可与噬菌体结合。穆斯堡尔光谱还揭示了噬菌体对晶体形成可能产生的影响。然而,这些现象需要进一步研究。