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In Vivo Stable-Isotope Labeling and Mass-Spectrometry-Based Metabolic Profiling of a Potent Tobacco-Specific Carcinogen in Rats

机译:在体内稳定同位素标记和大鼠有效烟草特异性致癌物质的基于质谱的代谢分析

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摘要

The tobacco-specific nitrosamine, 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK), is a potent lung carcinogen that exerts its carcinogenic effects upon metabolic activation. The identification and quantitation of NNK metabolites could identify potential biomarkers of bioactivation and detoxification of this potent carcinogen and may be used to predict lung cancer susceptibility among smokers. Here, we used in vivo isotope-labeling and high-resolution-mass spectrometry-based methods for the comprehensive profiling of all known and unknown NNK metabolites. The sample enrichment, LC-MS, and data-analysis workflow, including a custom script for automated d(0)-d(4)-m/z-pair-peak detection, enabled unbiased identification of numerous NNK metabolites. The structures of the metabolites were confirmed using targeted LC-MS2 with retention-time (tR) and MS2-fragmentation comparisons to those of standards when possible. Eleven known metabolites and unchanged NNK were identified simultaneously. More importantly, our workflow revealed novel NNK metabolites, including 1,3-Diol (13), alpha-OH-methylNNAL-Gluc (14), nitro-NK-N-oxide (15), nitro-NAL-N-oxide (16), gamma-OH NNAL (17), and three N-acetylcysteine (NAC) metabolites (18a-c). We measured the differences in the relative distributions of a panel of nitroso-containing NNK-specific metabolites in rats before and after phenobarbital (PB) treatment, and this served as a demonstration of a general strategy for the detection of metabolic differences in animal and cell systems. Lastly, we generated a d(4)-labeled NNK-metabolite mixture to be used as internal standards (d(4)-rat urine) for the relative quantitation of NNK metabolites in humans, and this new strategy will be used to assess carcinogen exposure and ultimately to evaluate lung-cancer risk and susceptibility in smokers.
机译:烟草特异性亚硝基胺,4-(甲基亚氨基氨基氨基氨基)-1-(3-吡啶基)-1-丁酮(NNK)是一种有效的肺癌,其对代谢活化作出致癌作用。 NNK代谢物的鉴定和定量可以识别潜在的生物活化生物标志物和这种有效致癌物质的解毒,并且可用于预测吸烟者之间的肺癌易感性。在此,我们用于基于体内同位素标记和高分辨率 - 质谱的方法,用于全面剖析所有已知和未知的NNK代谢物。样本浓缩,LC-MS和数据分析工作流程,包括用于自动D(0)-D(4)-M / Z形峰值检测的自定义脚本,使得众多NNK代谢物的无偏见识别。使用靶向LC-MS2确认代谢物的结构,并在可能的情况下使用固定时间(TR)和MS2 - 碎片比较。同时鉴定了11次已知的代谢物和不变的NNK。更重要的是,我们的工作流程显示了新的NNK代谢物,包括1,3-二醇(13),α-OH-甲基NAL-GLUC(14),硝基-NK-N-氧化物(15),硝基 - NAL-N-氧化物( 16),γ-OH NON(17)和三种N-乙酰半胱氨酸(NAC)代谢物(18A-C)。我们测量了苯巴比妥(PB)治疗前后大鼠含亚硝基NNK特异性代谢物的相对分布的差异,并且这是对检测动物和细胞代谢差异的一般策略的演示系统。最后,我们生成了Ad(4) - 标记的NNK - 代谢物混合物以用于人类中NNK代谢物的相对定量的内标(D(4)-RAT尿液),并且这种新策略将用于评估致癌物暴露最终评估吸烟者的肺癌风险和易感性。

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  • 来源
    《Analytical chemistry》 |2018年第20期|共10页
  • 作者单位

    Univ Minnesota Masonic Canc Ctr 2231 Sixth St Southeast Minneapolis MN 55455 USA;

    Univ Minnesota Masonic Canc Ctr 2231 Sixth St Southeast Minneapolis MN 55455 USA;

    Univ Minnesota Masonic Canc Ctr 2231 Sixth St Southeast Minneapolis MN 55455 USA;

    3732 Harriet Ave South Minneapolis MN 55409 USA;

    Univ Minnesota Masonic Canc Ctr 2231 Sixth St Southeast Minneapolis MN 55455 USA;

    Univ Minnesota Masonic Canc Ctr 2231 Sixth St Southeast Minneapolis MN 55455 USA;

    Univ Minnesota Masonic Canc Ctr 2231 Sixth St Southeast Minneapolis MN 55455 USA;

    Univ Minnesota Masonic Canc Ctr 2231 Sixth St Southeast Minneapolis MN 55455 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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