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Application of ion trap-MS with QqTOF-MS in the identification H/D exchange and of microbial degradates of trimethoprim in nitrifying activated sludge

机译:离子阱-MS与QqTOF-MS在硝化活性污泥的H / D交换和甲氧苄啶微生物降解物鉴定中的应用

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In this work, the identification of two microbial degradation products of the antimicrobial trimethoprim (290 Da) is described. The structural elucidation of the metabolites, which were produced by nitrifying activated sludge bacteria in a small-scale laboratory batch reactor, was accomplished by electrospray ionization-ion trap mass spectrometry conducting consecutive fragmentation steps (MSn) combined with H/D-exchange experiments. Although one metabolite corresponded to alpha-hydroxytrimethoprim (306 Da), oxidation of the aromatic ring within the diaminopyrimidine substructure was determined for the second degradate (324 Da). Accurate mass measurements of the two metabolites were provided by a hybrid quadrupole time-of-flight-mass spectrometer operated in MS/MS mode. With absolute mass errors of < 5 mDa, it allowed us to confirm the proposed elemental composition for the protonated precursor ions as well as for a series of fragment ions that were previously identified by ion trap mass spectrometry. The study emphasized the potential of nitrifying activated sludge bacteria for breaking down an environmentally relevant pharmaceutical that is otherwise poorly degradable by a bacterial community encountered in conventional activated sludge.
机译:在这项工作中,描述了抗微生物药甲氧苄氨嘧啶(290 Da)的两种微生物降解产物的鉴定。通过在小型实验室分批反应器中硝化活性污泥细菌而产生的代谢物的结构解析,是通过电喷雾电离-离子阱质谱法进行连续的碎裂步骤(MSn)与H / D交换实验相结合而完成的。尽管一种代谢物对应于α-羟基三甲氧苄啶(306 Da),但对于第二种降解物(324 Da)却确定了二氨基嘧啶亚结构内的芳环氧化。通过在MS / MS模式下运行的混合四极杆飞行时间质谱仪提供了两种代谢物的准确质量测量结果。绝对质量误差小于5 mDa,这使我们能够确认所提议的质子化前体离子以及先前通过离子阱质谱法鉴定的一系列碎片离子的元素组成。这项研究强调了硝化活性污泥细菌分解潜在的环境相关药物的潜力,这种药物否则会被常规活性污泥中遇到的细菌群落难降解。

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