细菌
化学
抗生素
微生物学
核化学
生物
生物化学
遗传学
作者
Hao Chen,Jingfeng Gao,Qian Wang,Ying Liu,Lei Wu,Xiaoyu Fu,Yi Guo,HanYi Wang,Yuxuan Wang
标识
DOI:10.1016/j.jhazmat.2024.134132
摘要
The proliferation of antibiotic resistant genes (ARGs) and antibiotic resistant bacteria (ARB) caused by antibiotic abuse has raised concerns about the global infectious-disease crisis. This study employed periodate (PI)/Ferrate (VI) (Fe (VI)) system to disinfect Gram-negative ARB (Escherichia coli DH5α) and Gram-positive bacteria (Bacillus subtilis ATCC6633). The PI/Fe (VI) system could inactivate 1 × 108 CFU/ml of Gram-negative ARB and Gram-positive bacteria by 4.0 and 2.8 log in 30 min. Neutral and acidic pH, increase of PI dosage and Fe (VI) dosage had positive impacts on the inactivation efficiency of ARB, while alkaline solution and the coexistence of 10 mM Cl-, NO3-, SO42- and 20 mg/L humic acid had slightly negative impacts. The reactive species generated by PI/Fe (VI) system could disrupt the integrity of cell membrane and wall, leading to oxidative stress and lipid peroxidation. Intracellular hereditary substance, including DNA and ARGs (tetA), would leak into the external environment through damaged cells and be degraded. The electron spin resonance analysis and quenching experiments indicated that Fe (IV)/Fe (V) played a leading role in disinfection. Meanwhile, PI/Fe (VI) system also had an efficient removal effect on sulfadiazine, which was expected to inhibit the ARGs transmission from the source. The proliferation of antibiotic resistant bacteria (ARB) and antibiotic resistant genes (ARGs) has increased the risk of a global infectious disease crisis. The periodate (PI)-based advanced oxidation processes were mainly applied for antibiotic removal and were less frequently reported in the field of disinfection. In this study, the PI/Ferrate (VI) (Fe (VI)) system was applied to the field of disinfection for the first time, the disinfection mechanisms were elucidated from the perspectives of molecular biology and reactive species. This study provided a potential new strategy for controlling the spread of ARB and ARGs.
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