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High-throughput screening of drug residues in aquatic products by liquid chromatography-electrostatic field track well high resolution mass spectrometry / 上海预防医学
Shanghai Journal of Preventive Medicine ; (12): 526-532, 2022.
Article in Chinese | WPRIM | ID: wpr-936462
ABSTRACT
ObjectiveIn order to ensure the food safety of cultured aquatic products in China, strengthen the supervision and improve detection efficiency, a high-throughput screening method for drug residues in aquatic products by mass spectrometry is to be developed. MethodsLiquid chromatography-electrostatic field track well high resolution mass spectrometry and C18 column were used to separate and collect the information of ion fragments and retention time of 195 veterinary drug standards in positive ion mode, and drug residues in aquatic products were extracted by organic solvents. ResultsThe mass spectrum database and detection methods of 195 veterinary drug standards were established, and a pre-treatment method was developed for extracting veterinary drug residues from aquatic products by acetonitrile and ethyl acetate. The detection method was sensitive, accurate, simple and rapid, and the adding standard recovery of more than 80% compounds reached 70%‒110%. ConclusionThe establishment of this method can quickly and massively screen drug residues in aquatic products, provide technical support for food safety risk monitoring and supervision, cope with the increasing demand for aquatic products and aquaculture volume year by year, and provide a theoretical basis for the subsequent development of mass spectrometry high-throughput detection methods.

Full text: Available Index: WPRIM (Western Pacific) Type of study: Diagnostic study / Practice guideline / Screening study Language: Chinese Journal: Shanghai Journal of Preventive Medicine Year: 2022 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Type of study: Diagnostic study / Practice guideline / Screening study Language: Chinese Journal: Shanghai Journal of Preventive Medicine Year: 2022 Type: Article