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Spectrochim Acta A Mol Biomol Spectrosc ; 278: 121365, 2022 Oct 05.
Article in English | MEDLINE | ID: mdl-35576841

ABSTRACT

Antibiotics are widely used in daily life, which has created a global scenario where many pathogenic organisms have become effectively resistant to antibiotics. The abuse or overuse of antibiotics causes significant environmental pollution and even endangers human health. It is well-known that antibiotics' efficacy (toxicity) is determined by molecular structure. Therefore, structure-level qualitative analysis with high sensitivity and accuracy is vitally important. Characterized by fingerprinting recognition, Raman spectroscopy, especially surface-enhanced Raman spectroscopy (SERS), has become an essential qualitative analysis tool in various fields, such as environmental monitoring and food safety. With the exception of chirality, this study completed the qualitative trace analysis of 16 quinolone antibiotics (QNs) with fine molecular structure differences using SERS. The sensitivity was tuned in by one order of magnitude through the different electronegativity and steric hindrances of the slightly changed functional groups in the specific antibiotics. The fine structure dependent sensitivity enables SERS to be a powerful on-site monitoring tool to control the abuse of antibiotics with high toxicity; thus, decreasing the subsequent risk to the environmental ecology and human society.


Subject(s)
Quinolones , Spectrum Analysis, Raman , Anti-Bacterial Agents/analysis , Anti-Bacterial Agents/pharmacology , Environmental Monitoring , Food Safety , Humans , Quinolones/analysis , Spectrum Analysis, Raman/methods
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