Ohio State University Comprehensive Cancer Center, Columbus, Ohio, USA.
J Proteome Res. 2013 Feb 1;12(2):679-91. doi: 10.1021/pr3007705. Epub 2013 Jan 14.
Metabolomics is likely an ideal tool to assess tobacco smoke exposure and the impact of cigarette smoke on human exposure and health. To assess reproducibility and feasibility of this by UPLC-QTOF-MS, three experiments were designed for the assessment of smokers' blood. Experiment I was an analysis of 8 smokers with 8 replicates. Experiment II was an analysis of 62 pooled quality control (QC) samples from 7 nonsmokers' plasma placed as every tenth sample among a study of 613 samples from 160 smokers. Finally, to examine the feasibility of metabolomic study in assessing smoke exposure, Experiment III consisted of 9 smokers and 10 nonsmokers' serum to evaluate differences in their global metabolome. There was minimal measurement and sample preparation variation in all experiments, although some caution is needed when analyzing specific parts of the chromatogram. When assessing QC samples in the large scale study, QC clustering indicated high stability, reproducibility, and consistency. Finally, in addition to the identification of nicotine metabolites as expected, there was a characteristic profile distinguishing smokers from nonsmokers. Metabolites selected from putative identifications were verified by MS/MS, showing the potential to identify metabolic phenotypes and new metabolites relating to cigarette smoke exposure and toxicity.
代谢组学可能是评估烟草烟雾暴露和香烟烟雾对人体暴露和健康影响的理想工具。为了通过 UPLC-QTOF-MS 评估这种方法的重现性和可行性,设计了三个用于评估吸烟者血液的实验。实验 I 是对 8 名吸烟者的 8 个重复样本进行的分析。实验 II 是对 7 名非吸烟者血浆中 62 个混合质控 (QC) 样本的分析,这些 QC 样本被放置在对 160 名吸烟者的 613 个样本进行的研究中的每十个样本中。最后,为了研究代谢组学在评估烟雾暴露方面的可行性,实验 III 包括 9 名吸烟者和 10 名非吸烟者的血清,以评估他们的整体代谢组之间的差异。尽管在分析特定部分的色谱图时需要谨慎,但所有实验中的测量和样品制备变化都很小。在大规模研究中评估 QC 样本时,QC 聚类表明具有高稳定性、重现性和一致性。最后,除了如预期那样鉴定出尼古丁代谢物外,还有一个特征谱可以将吸烟者与不吸烟者区分开来。从假定鉴定中选择的代谢物通过 MS/MS 进行了验证,表明有可能识别与香烟烟雾暴露和毒性相关的代谢表型和新代谢物。