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Pseudobactins bounded iron nanoparticles for control of an antibiotic-resistant Pseudomonas aeruginosa ryn32

机译:伪粘蛋白有界铁纳米粒子用于控制抗生素抗性假单胞菌铜绿假单胞菌ryn32

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Among 50 strains of Pseudomonas aeruginosa tested for the resistance to antibiotics, strain ryn32 was selected for this study based on its resistance level. It showed complete resistance toward aztreonam and almost complete resistance (96%) against kanamycin. Iron nanoparticles (FeNPs) were then prepared and found with diameters 30-50 nm. The threshold level of FeNPs for pyoverdines (PVDs) production by P. aeruginosa ryn32 was found at 25 mu M concentration. PVDs production was optimal with pH 7.5, 35 degrees C, succinate as carbon source, ammonium sulfate as nitrogen source at 60 hr fermentation time. Interestingly, when used the PVDs as conjugates with FeNPs they showed antibacterial action against the producing strain and some other gram-negative bacteria. This suggests that the conjugates enter the bacterial cell via the ferriPVDs uptake pathway, which triggers the accumulation of FeNPs inside the cell, which is crucial on bacterial viability. Growth stimulation with the same concentrations of FeNPs and PVDs in separate treatments supported this view.
机译:在测试对抗生素抗性的50个铜绿假单胞菌中,基于其阻力水平选择菌株Ryn32。它表现出对AztReonam的完全抗性,并且几乎完全抗Kanamycin的抗性(96%)。然后制备铁纳米粒子(FENPS)并以直径30-50nm的直径。 P.铜绿假单胞菌ryn32的钙葡萄酒(PVDS)生产的FENPS的阈值水平以25μm浓度为25μm。 PVDS生产与pH7.5,35,35℃,琥珀酸碳源,硫酸铵作为氮源60小时发酵时间。有趣的是,当用FENPS使用PVDS作为缀合物时,它们显示出对产生菌株和一些其他革兰氏阴性细菌的抗菌作用。这表明缀合物通过Ferripvds吸收途径进入细菌细胞,这触发了细胞内FENP的积聚,这对细菌活力至关重要。在单独治疗中具有相同浓度的FENPS和PVD的生长刺激支持这一观点。

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