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Identification of ceftazidime interaction with bacteria in wastewater treatment by Raman spectroscopic mapping

机译:用拉曼光谱法测定与废水处理中细菌的头孢他啶相互作用

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摘要

Raman spectroscopy yields a fingerprint spectrum and is of great importance in medical and biological sciences as it is non-destructive, non-invasive, and available in the aqueous environment. In this study, Raman spectroscopy and Raman mapping were used to explore the dynamic biochemical processes in screened bacteria under ceftazidime stress. The Raman spectral difference between bacteria with and without antibiotic stress was analyzed by principal component analysis and characteristic peaks were obtained. The results showed that amino acids changed first and lipids were reduced when bacteria were exposed to ceftazidime stress. Furthermore, in Raman mapping, when bacteria were subjected to antibiotic stress, the peak at 1002 cm(-1) (phenylalanine) increased, while the peak at 1172 cm(-1) (lipids) weakened. This indicates that when bacteria were stimulated by antibiotics, the intracellular lipids decreased and the content of specific amino acids increased. The reduction of intracellular lipids may suggest a change of membrane permeability. The increase of specific amino acids suggests that bacteria resist external stimuli of antibiotics by regulating the activities of related enzymes. This study explored the processes of the action between bacteria and antibiotics by Raman spectroscopy, and provides a foundation for the further study of the dynamics of microbial biochemical processes in the future.
机译:拉曼光谱产生指纹光谱,在医学和生物科学中具有重要意义,因为它是无损,无侵入性和在水环境中可用的。在该研究中,拉曼光谱和拉曼测绘用于探讨头孢他啶胁迫下筛选细菌中的动态生化过程。通过主成分分析分析具有和不具有抗生素应激的细菌之间的拉曼光谱差异,并获得特征峰。结果表明,当细菌暴露于头孢他啶胁迫时,氨基酸首先改变,脂质也降低。此外,在拉曼映射中,当细菌进行抗生素应激时,1002cm(-1)(苯丙氨酸)的峰值增加,而1172cm(-1)(脂质)的峰减弱。这表明当通过抗生素刺激细菌时,细胞内脂质降低,并且特定氨基酸的含量增加。细胞内脂质的减少可能表明膜渗透性的变化。特异性氨基酸的增加表明,细菌通过调节相关酶的活性来抵抗抗生素的外部刺激。本研究通过拉曼光谱探索了细菌和抗生素之间的作用的过程,为未来进行了微生物生化过程的进一步研究进一步研究了基础。

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    《RSC Advances》 |2019年第56期|共9页
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  • 正文语种 eng
  • 中图分类 化学;
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