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Why Small Differences Matter: Elucidation of the Mechanisms Underlying the Transformation of 2OH- and 3OH-Carbamazepine in Contact with Sand Filter Material

机译:为什么会产生微小差异:阐明与砂滤料接触的2OH-和3OH-卡马西平转化的机理

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摘要

Carbamazepine (CBZ) is a worldwide used antiepileptic drug, which is metabolized to a large extent in the human body to several metabolites, including 10,11-dihydroxy- 10,11-dihydrocarbamazepine (DiOHCBZ), 2-hydroxycarbamaze- pine (2OHCBZ), and 3-hydroxycarbamazepine (3OHCBZ). 2OHCBZ and 3OHCBZ were previously detected in raw and treated wastewater revealing their widespread emission into the aquatic environment, eventually leading to the contamination of drinking water resources. Sand filtration is frequently applied in drinking water treatment for the removal of inorganic species and suspended particles but has been shown to be capable of removing trace organic contaminants. This study focuses on the elucidation of the (bio) transformation mechanisms of 2OHCBZ and 3OHCBZ in contact with material taken from a rapid sand filter of a German waterworks. Despite their similar structure, which differs only in the position of the phenolic OH moiety, both compounds underwent distinct transformation reactions leading to the formation of a variety of transformation products (TPs). The main biochemical reactions thereby included enzymatic transformation of 2OHCBZ resulting in the formation of a reactive iminoquinone intermediate (2OHCBZ) and nitration via peroxynitrite (2OHCBZ and 3OHCBZ) as well as formation of radicals leading to dimerization (3OHCBZ). Further transformation reactions included hydroxylation, ring cleavage, loss of carbamoyl group, and decarbozylation, as well as O-methylation.
机译:卡马西平(CBZ)是一种世界范围内使用的抗癫痫药,在人体中大量代谢为几种代谢物,包括10,11-二羟基-10,11-二氢卡马西平(DiOHCBZ),2-羟基卡马西平(2OHCBZ) ,和3-hydroxycarbamazepine(3OHCBZ)。先前在原水和处理后的废水中检测到2OHCBZ和3OHCBZ,发现它们广泛排放到水生环境中,最终导致饮用水资源的污染。砂滤经常用于饮用水处理中,以去除无机物和悬浮颗粒,但已证明能够去除痕量有机污染物。这项研究的重点在于阐明2OHCBZ和3OHCBZ与从德国自来水厂的快速滤砂器中获取的物质接触的(生物)转化机理。尽管它们的结构相似,只是酚羟基部分的位置不同,但两种化合物都经历了不同的转化反应,导致形成各种转化产物(TP)。因此,主要的生化反应包括2OHCBZ的酶促转化,导致反应性亚氨基醌中间体(2OHCBZ)的形成和过氧亚硝酸盐(2OHCBZ和3OHCBZ)的硝化作用以及自由基的形成,从而导致二聚化(3OHCBZ)。进一步的转化反应包括羟基化,环裂解,氨基甲酰基基团的丧失,脱碳羰基化以及O-甲基化。

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  • 来源
    《Environmental Science & Technology》 |2015年第17期|10449-10456|共8页
  • 作者单位

    Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany;

    Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany;

    Max Planck Institute for Polymer Research (MPI), Ackermannweg 10, Mainz, Germany;

    Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);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
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  • 入库时间 2022-08-17 13:59:43

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