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首页> 外文期刊>ACS Omega >Rapid and Simultaneous Analysis of Multiple Classes of Antimicrobial Drugs by Liquid Chromatography-Tandem Mass Spectrometry and Its Application to Routine Biomedical, Food, and Soil Analyses
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Rapid and Simultaneous Analysis of Multiple Classes of Antimicrobial Drugs by Liquid Chromatography-Tandem Mass Spectrometry and Its Application to Routine Biomedical, Food, and Soil Analyses

机译:液相色谱 - 串联质谱法快速同时分析多种抗微生物药物及其在常规生物医学,食品和土壤分析中的应用

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Antimicrobial agents (AMAs) are widely exploited nowadays to meet the high demand for animal-derived food. It has a significant impact on the food chain whose end consumers are human beings. The burden of AMAs on humans comes from either meat or crops cultivated on soil containing high residual antibiotics, which are responsible for the global crisis of antibiotic resistance. Thus, the objective of this study was to design a selective and sensitive liquid chromatography–mass spectrometry (LC-MS)/MS-based simultaneous bioanalytical method for estimation of twenty AMAs in human plasma, raw meat, and soil samples. The selective extraction of all analytes from the above matrices was performed by the solid-phase extraction clean-up method to overcome the interferences. Analytes were separated on a Waters Symmetry Shield C18 (150 × 4.6 mm~(2), 5 μm) column, using an isocratic solvent system of methanol–0.5% formic acid (80:20, v/v) with 0.75 mL/min flow rate. The average extraction recoveries for all analytes in plasma were ranged from 42.0 to 94.0% with relative standard deviations (RSDs) below ±15%. All of the validation parameters are in accordance with the United State Food and Drug Administration (USFDA) guidelines. Moreover, the method was also valid for a broad plasma concentration range and can be proposed as an excellent method for routine pharmacokinetic studies, therapeutic drug monitoring, clinical analysis, and detection and quantitation of AMA remnants in raw meat as a standard quality control test for human consumption.
机译:现在广泛利用抗菌剂(AMA)以满足对动物衍生食物的高需求。它对最终消费者是人类的食物链产生重大影响。对人类的AMAS负担来自含有高残留抗生素的土壤中的肉类或作物,这负责全球抗生素抗性危机。因此,本研究的目的是设计一种选择性和敏感的液相色谱 - 质谱(LC-MS)/ MS的同时生物分析方法,用于估计人血浆,生肉和土壤样品中的二十氨。通过固相萃取清理方法进行来自上述基质的所有分析物的选择性提取,以克服干扰。分析物在水对称屏蔽C18(150×4.6mm〜(2),5μm)柱上分离,使用甲醇-0.5%甲酸(80:20,v / v)的等物体溶剂系统,0.75ml / min流速。血浆所有分析物的平均提取回收率范围为42.0至94.0%,相对标准偏差(RSD)低于±15%。所有验证参数都符合美国食品和药物管理局(USFDA)指导方针。此外,该方法也适用于宽等离子体浓度范围,并且可以提出作为常规药代动力学研究,治疗药物监测,临床分析和检测和定量生肉的常规药代动力学研究,作为标准质量控制测试的优异方法人类消费。

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