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Metabolite identification of ibuprofen biodegradation by Patulibacter medicamentivorans under aerobic conditions

机译:需氧条件下破壁杆菌可降解布洛芬的代谢物

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摘要

Ibuprofen (IBU) is a non-steroidal anti-inflammatory drug that is becoming increasingly recognized as an important micropollutant to be monitored in wastewater treatment plants (WWTP), since it has been detected in effluents at the mu g L-1 level. The IBU metabolites from biological degradation are not completely understood and can represent a threat to natural aquatic systems. P. medicamentivorans was previously isolated from WWTP sludge and found to be capable of IBU degradation. The aerobic biodegradation of ibuprofen by this organism was investigated in a batch lab-scale reactor for the identification of the metabolites formed. The metabolites were analysed and putatively identified by HPLC-DAD-MS/MS and GC-MS and biodegradation pathways were proposed. The toxicity and the biodegradability potential of the metabolites were also investigated. The results showed that IBU biotransformation was achieved by hydroxylation followed by the formation of a carboxylic acid in the IBU molecule and by the formation of a catechol, allowing the aromatic ring cleavage. Two biodegradation pathways were proposed: in one, the metabolites generated from the enzymatic action correspond to a less biodegradable chemical structure of the intermediate products (isobutylbenzene and 3-isobutylphenol), with comparatively higher toxicity; in the other mechanism, more oxidable chemical structures were formed with less toxicity and higher biodegradability. This suggests that the biodegradation of IBU by P. medicamentivorans can take place by more than one mechanism regarding the enzymes formed by this Gram-positive bacterium, with subsequent oxidation of the parent compound to overall more soluble and less toxic compounds to fish, daphnia and green algae.
机译:布洛芬(IBU)是一种非甾体类抗炎药,由于在废水中的微克L-1水平已被检测到,因此被越来越多地公认为是废水处理厂(WWTP)中要监测的重要微污染物。生物降解引起的IBU代谢产物尚未完全了解,可能对天然水生系统构成威胁。先前从污水处理厂的污泥中分离出了P. medicamentivorans,发现它能够降解IBU。在分批实验室规模的反应器中研究了该生物体对布洛芬的好氧生物降解,以鉴定形成的代谢物。通过HPLC-DAD-MS / MS和GC-MS对代谢产物进行分析和鉴定,并提出了生物降解途径。还研究了代谢物的毒性和生物降解潜力。结果表明,通过羟基化,随后在IBU分子中形成羧酸和通过形成邻苯二酚,实现芳族环的裂解,实现了IBU的生物转化。提出了两种生物降解途径:第一,酶促作用产生的代谢产物与中间产物(异丁苯和3-异丁基苯酚)的生物降解化学结构相对较低,具有相对较高的毒性。在另一种机理中,形成了更多的可氧化化学结构,毒性更低,生物降解性更高。这表明关于该革兰氏阳性细菌形成的酶的多种机理可导致P. medicamentivorans对IBU的生物降解,随后母体化合物被氧化成对鱼类,水蚤和鱼类而言总体上更易溶且毒性较小的化合物。绿藻。

著录项

  • 来源
    《Environmental Technology》 |2020年第4期|450-465|共16页
  • 作者单位

    Univ Nova Lisboa FCT Dept Chem LAQV REQUIMTE Caparica Portugal|IPS ESTS CINEA Setubal Portugal;

    Univ Nova Lisboa ITQB Inst Tecnol Quim & Biol Antonio Xavier Oeiras Portugal;

    Univ Nova Lisboa FCT Dept Chem LAQV REQUIMTE Caparica Portugal;

    Univ Nova Lisboa FCT Dept Chem UCBIO REQUIMTE P-2829516 Caparica Portugal;

    Univ Nova Lisboa ITQB Inst Tecnol Quim & Biol Antonio Xavier Oeiras Portugal|IBET Oeiras Portugal;

    Univ Nova Lisboa FCT Dept Chem UCBIO REQUIMTE P-2829516 Caparica Portugal|Univ Queensland Sch Chem Engn Brisbane Qld 4072 Australia;

    Univ Nova Lisboa FCT Dept Chem UCBIO REQUIMTE P-2829516 Caparica Portugal|Univ Queensland Adv Water Management Ctr Brisbane Qld 4072 Australia;

    Univ Nova Lisboa ITQB Inst Tecnol Quim & Biol Antonio Xavier Oeiras Portugal|Univ Lisbon Fac Farm Lisbon Portugal;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ibuprofen; metabolite identification; biodegradation; biochemical pathway; toxicity;

    机译:布洛芬;代谢物鉴定生物降解生化途径毒性;
  • 入库时间 2022-08-18 05:15:17

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