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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Accurate Quantification of Sulfonamide Metabolites in Goat Meat: A New Strategy for Minimizing Interaction between Sheep Serum Albumin and Sulfonamide Metabolites
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Accurate Quantification of Sulfonamide Metabolites in Goat Meat: A New Strategy for Minimizing Interaction between Sheep Serum Albumin and Sulfonamide Metabolites

机译:准确定量山羊肉中磺胺胺代谢物的定量:一种最大限度地减少绵羊血清白蛋白和磺酰胺代谢物相互作用的新策略

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To date, the determination of sulfonamide metabolites in animal-derived food has universal disadvantages of low throughput and no integrated metabolites involved. In this study, a powerful and reliable strategy for high-throughput screening of sulfonamide metabolites in goat meat was proposed based on an aqueous two-phase separation procedure (ATPS) combined with ultrahigh-performance liquid chromatography quadrupole-Orbitrap high-resolution mass spectrometry (UHPLC-Q-Orbitrap). Noncovalent interactions including van der Waals force, hydrogen bonding, and hydrophobic effect were determined to be staple interactions between the sulfonamide metabolites and sheep serum albumin by fluorescence spectroscopy and molecular docking technology, and an 80% acetonitrile-water solution/(NH4)(2)SO4 was used as ATPS in order to release combined sulfonamide metabolites and minimize the influence of sheep serum albumin. Sulfonamide metabolites in the matrix were screened based on a mechanism of mass natural loss and core structure followed by identification combined with the pharmacokinetic. The developed strategy was validated according to EU standard 2002/657/EC with CC alpha ranging from 0.07 to 0.98 mu g kg(-1), accuracy recovery with 84-107%, and RSDs lower than 8.9%. Eighty seven goat meat samples were used for determination of 26 sulfonamides and 8 potential metabolites. On the basis of the established innovative process, this study has successfully implemented the comprehensive detection of sulfonamide metabolites, including N-4-acetylated substitution, N-4-hydroxylation, 4-nitroso, azo dimers, oxidized nitro, N-4 monoglucose conjugation, beta-D-glucuronide, and N-4-aminobenzenesulfonyl metabolites, which were shown to undergo oxidation, hydrogenation, sulfation, glucuronidation, glucosylation, and O-aminomethylation.
机译:迄今为止,动物源性食品中磺胺类代谢物的测定普遍存在吞吐量低和不涉及整合代谢物的缺点。在本研究中,基于双水相分离程序(ATPS)结合超高效液相色谱-四极轨道高分辨质谱(UHPLC-Q-Orbitrap),提出了一种高通量筛选羊肉中磺胺类代谢物的有效且可靠的策略。通过荧光光谱和分子对接技术,非共价相互作用(包括范德华力、氢键和疏水效应)被确定为磺酰胺代谢物和绵羊血清白蛋白之间的主要相互作用,并且使用80%乙腈水溶液/(NH4)(2)SO4作为ATP,以释放组合的磺酰胺代谢物,并最小化绵羊血清白蛋白的影响。根据质量自然损失机制和核心结构筛选基质中的磺酰胺代谢物,然后结合药代动力学进行鉴定。根据欧盟标准2002/657/EC对开发的策略进行了验证,CC-alpha范围为0.07至0.98μg-kg(-1),准确度回收率为84-107%,RSD低于8.9%。87份羊肉样品用于26种磺胺类药物和8种潜在代谢物的测定。在已建立的创新工艺的基础上,本研究成功地实现了磺酰胺代谢物的全面检测,包括N-4-乙酰化取代、N-4-羟基化、4-亚硝基、偶氮二聚体、氧化硝基、N-4-单葡萄糖共轭、β-D-葡萄糖醛酸和N-4-氨基苯磺酰代谢物,这些代谢物被证明经历了氧化、氢化、硫酸化、,葡萄糖醛酸化、糖基化和邻氨基甲基化。

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