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Formation and Occurrence of lodinated Tyrosyl Dipeptides in Disinfected Drinking Water

机译:消毒饮用水中酪氨酰二肽的形成和发生

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摘要

Iodinated disinfection byproducts (I-DBPs) are highly toxic, but few precursors of I-DBPs have been investigated. Tyrosine-containing biomolecules are ubiquitous in surface water. Here we investigated the formation of I-DBPs from the chloramination of seven tyrosyl dipeptides (tyrosylglycine, tyrosylalanine, tyrosylvaline, tyrosylhistidine, tyrosylglutamine, tyrosylglutamic acid, and tyrosylphenylalanine) in the presence of potassium iodide. High resolution mass spectrometry and tandem mass spectrometry (MS/MS) analyses of the benchtop reaction solutions found that all seven precursors formed both I- and Cl-substituted tyrosyl dipeptide products. Iodine substitutions occurred on the 3- and 3,5-positions of the tyrosyl-phenol ring while chlorine substituted on the free amino group. To reach the needed sensitivity to detect iodinated tyrosyl dipeptides in authentic waters, we developed a high performance liquid chromatography (HPLC)-MS/MS method with multiple reaction monitoring mode and solid phase extraction. HPLC-MS/MS analysis of tap and corresponding raw water samples, collected from three cities, identified four iodinated peptides, 3-I-/3,5-di-I-Tyr-Ala and 3-I-/3,5-di-I-Tyr-Gly, in the tap waters but not in the raw waters. The corresponding precursors, Tyr-Ala and Tyr-Gly, were also detected in the same tap and raw water samples. This study demonstrates that iodinated dipeptides exist as DBPs in drinking water.
机译:碘化消毒副产物(I-DBPs)具有剧毒,但很少研究I-DBPs的前体。含酪氨酸的生物分子在地表水中无处不在。在这里,我们研究了在碘化钾存在下,由七个酪氨酰二肽(酪氨酰甘氨酸,酪氨酰丙氨酸,酪氨酰缬氨酸,酪氨酰组氨酸,酪氨酰谷氨酰胺,酪氨酰谷氨酸和酪氨酰苯丙氨酸)的氯化作用形成的I-DBPs。台式反应溶液的高分辨率质谱和串联质谱(MS / MS)分析发现,所有七个前体均形成了I-和Cl取代的酪氨酰二肽产品。碘取代发生在酪氨酰苯酚环的3和3,5-位,而氯取代了游离氨基。为了达到在真实水中检测碘化酪氨酰二肽所需的灵敏度,我们开发了一种具有多种反应监测模式和固相萃取的高效液相色谱(HPLC)-MS / MS方法。从三个城市收集的自来水和相应原水样品的HPLC-MS / MS分析确定了四种碘化肽,即3-I- / 3,5-di-I-Tyr-Ala和3-I- / 3,5- di-I-Tyr-Gly,在自来水中,但不在原水中。在相同的自来水和原水样品中也检测到了相应的前体Tyr-Ala和Tyr-Gly。这项研究表明,碘化二肽作为DBP存在于饮用水中。

著录项

  • 来源
    《Environmental Science & Technology》 |2018年第7期|4218-4226|共9页
  • 作者单位

    Division of Analytical and Environmental Toxicology, Department of Laboratory Medicine and Pathology, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Alberta Canada T6G 2G3;

    Division of Analytical and Environmental Toxicology, Department of Laboratory Medicine and Pathology, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Alberta Canada T6G 2G3;

    Division of Analytical and Environmental Toxicology, Department of Laboratory Medicine and Pathology, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Alberta Canada T6G 2G3;

    Division of Analytical and Environmental Toxicology, Department of Laboratory Medicine and Pathology, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Alberta Canada T6G 2G3,College of Chemical and Environmental Engineering, Anyang Institute of Technology, Anyang 455000, Henan P. R. China;

    Division of Analytical and Environmental Toxicology, Department of Laboratory Medicine and Pathology, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Alberta Canada T6G 2G3;

  • 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
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  • 入库时间 2022-08-17 13:56:36

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