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Investigation of the microbial degradation of phenazone-type drugs and their metabolites by natural biofilms derived from river water using liquid chromatography/tandem mass spectrometry (LC-MS/MS)

机译:使用液相色谱/串联质谱法(LC-MS / MS)研究源自河水的天然生物膜对非那zone类药物及其代谢产物的微生物降解

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摘要

The degradation of the Pharmaceuticals phenazone and metamizole, two pyrazolone-derivates in widespread use, using biofilms created by natural organisms from the national park Unteres Odertal, Germany, were investigated. An analytical method based on LC-MS/ MS was optimised to determine the substances phenazone and methylaminoantdpyrine (MAA), the hydrolysis product of metamizole (also known as dipyrone), as well as their metabolites l,5-dimethyl-l,2-dehydro-3-pyrazolone (DP), acetaminoantipyrine (AAA), for-mylaminoantipyrine (FAA) and 4-aminoantipyrine (AA). Performance characteristics of the method were evaluated in terms of recovery, standard deviation, coefficient of variation, method detection limits (MDL) and method quantification limits (MQL). Degradation studies of phenazone and MAA were conducted using a laboratory-scale continuous flow biofilm reactor fed with different nutrient media and with variable hydraulic retention times of 24 and 32 h. MAA was degraded rapidly to FAA and AA, while phenazone was not degraded under the prevailing conditions even after 32 h. By operating the bioreactor in batch mode to study the phenazone degradation potential of the biofilm under limiting nutrient conditions, an elimination rate of 85% phenazone was observed, but because of the slow elimination rate and aerobic conditions, the metabolite DP was not detected. In additional batch experiments using bacterial isolates from the natural biofilm to decompose phenazone, some bacterial strains were able to form DP from phenazone in marginal concentrations over the sampling period of eight weeks. Obviously, the microorganisms need a reasonably long time to adapt their metabolisms to enable the removal of phenazone from water samples.
机译:使用了德国国家公园上天然生物产生的生物膜,研究了广泛使用的两种吡唑啉酮衍生物的吩甲酮和间咪唑的降解情况。优化了一种基于LC-MS / MS的分析方法,用于确定吩甲zone和甲基氨基蒽嘌呤(MAA),间苯二酚的水解产物(也称为双嘧啶)及其代谢物1,5-二甲基-l,2-脱氢-3-吡唑啉酮(DP),对乙酰氨基安替比林(AAA),对甲基氨基安替比林(FAA)和4-氨基安替比林(AA)。根据回收率,标准偏差,变异系数,方法检测限(MDL)和方法定量限(MQL)评估了该方法的性能特征。吩a酮和MAA的降解研究是使用实验室规模的连续流生物膜反应器进行的,该反应器装有不同的营养培养基,水力保留时间分别为24和32小时。 MAA迅速降解为FAA和AA,即使在32小时后,phenazone在普遍条件下也未降解。通过以分批方式操作生物反应器来研究在有限的养分条件下生物膜的phenazone降解潜力,观察到了85%phenazone的消除率,但是由于消除速度慢和有氧条件,未检测到代谢物DP。在使用来自自然生物膜的细菌分离物分解非那zone的其他分批实验中,一些细菌菌株能够在八周的采样时间内从边际浓度的非那zone形成DP。显然,微生物需要相当长的时间来适应其新陈代谢,才能从水样中去除非那a。

著录项

  • 来源
    《Water Research》 |2010年第15期|P.4559-4569|共11页
  • 作者单位

    Berlin Institute of Technology, Department of Environmental Engineering, Chair of Environmental Chemistry, KF 3, Strasse des U.Juni 135,10623 Berlin, Germany;

    rnBerlin Institute of Technology, Department of Environmental Engineering, Chair of Environmental Chemistry, KF 3, Strasse des U.Juni 135,10623 Berlin, Germany;

    rnBerlin Institute of Technology, Department of Environmental Engineering, Chair of Environmental Microbiology, Strasse des 17. Juni 135,10623 Berlin, Germany;

    rnBerlin Institute of Technology, Department of Environmental Engineering, Chair of Environmental Microbiology, Strasse des 17. Juni 135,10623 Berlin, Germany;

    rnBerlin Institute of Technology, Department of Environmental Engineering, Chair of Environmental Microbiology, Strasse des 17. Juni 135,10623 Berlin, Germany;

    rnBerlin Institute of Technology, Department of Environmental Engineering, Chair of Environmental Chemistry, KF 3, Strasse des U.Juni 135,10623 Berlin, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 13:49:41

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