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首页> 外文期刊>Environmental Science and Pollution Research >Exposure marker discovery of di(isononyl)cyclohexane-1,2-dicarboxylate using two mass spectrometry-based metabolite profiling data processing methods
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Exposure marker discovery of di(isononyl)cyclohexane-1,2-dicarboxylate using two mass spectrometry-based metabolite profiling data processing methods

机译:使用两种质谱的代谢物分析数据处理方法,曝光标记物DI(等壬基)环己烷-1,2-二羧酸酯的发现

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摘要

Di(isononyl)cyclohexane-1,2-dicarboxylate (DINCH) is a plasticizer used in polyvinyl chloride (PVC) products, such as toys and food packaging. Because the use of DINCH is on the rise, the risk of human exposure to this chemical may likewise increase. Discovering markers for assessing human chemical exposure is difficult because the metabolism of chemicals within humans is complex. In this study, two mass spectrometry (MS)-based metabolite profiling data processing methods, the mass defect filter (MDF) method and the signal mining algorithm with isotope tracing (SMAIT) method, were used for DINCH metabolite discovery, and 110 and 18 potential DINCH metabolite signal candidates were discovered, respectively, from in vitro DINCH incubation samples. Of these, the 21 signals were validated as tentative exposure marker signals in a rat model. Interestingly, the two methods generated rather different sets of DINCH exposure markers. Five of the 21 tentative exposure marker signals were verified as the probable DINCH structure-related metabolite signals based on their MS/MS product ion profiles. These five signals were detected in at least one human urine sample. Of the five probable DINCH structure-related metabolite signals, two novel signals might be suitable exposure markers that should be further investigated for their application in human DINCH exposure assessments. These observations indicate that the MDF and SMAIT methods may be used to discover a relatively different set of potential DINCH exposure markers.
机译:二(异壬基)环己烷-1,2-二羧酸酯(DINCH)是在聚氯乙烯(PVC)产品中使用的增塑剂,例如玩具和食品包装。因为使用DINCH正在上升,因此人体暴露于这种化学物质的风险同样可以增加。发现用于评估人类化学风险的标记很难,因为人类内化学品的代谢是复杂的。在该研究中,两个质谱(MS)基于代谢物分析数据处理方法,具有同位素跟踪(SMAIT)方法的质量缺陷滤波器(MDF)方法和信号挖掘算法,用于DINCH代谢物发现,110和18潜在的DINCH代谢物信号候选者分别从体外的DINCH孵育样品发现。其中,在大鼠模型中验证了21个信号作为暂定曝光标记信号。有趣的是,这两种方法产生了相当不同的Dinch曝光标记。基于其MS / MS产品离子轮廓验证了21个临时曝光标记信号中的五个与可能的DINCH结构相关的代谢物信号。在至少一个人尿液样品中检测到这五个信号。在五个可能的DINCH结构相关的代谢物信号中,两种新的信号可能是适当的暴露标记,应该进一步研究其在人的Dinch暴露评估中的应用。这些观察结果表明MDF和Smait方法可用于发现相对不同的潜在的Dinch曝光标记。

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