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Application of LC-MS-Based Global Metabolomic Profiling Methods to Human Mental Fatigue

机译:基于LC-MS的全局代谢组学谱分析方法在人类心理疲劳中的应用

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Mental fatigue is characterized by a reduced capacity for work and a loss of capacity to respond to stimulation and is usually accompanied by a feeling of tiredness and drowsiness. Mental fatigue at work is a serious problem and can raise safety concerns especially in the transportation system. It is believed that mental fatigue is a direct or contributing cause of road and air related accidents and incidents. Psychological studies indicate that fatigue results in reduced work efficiency, alertness, and impaired mental performance. However, its underlying biochemical mechanisms are poorly understood. We hypothesized that the human body is an integrated system, and mental fatigue results in changes not only in psychology but also in biochemistry of the human body. These biochemical changes are detectable in metabolites. We employed global metabolomic profiling methods to screen biochemical changes that occur with mental fatigue in air traffic controllers (ATCs) in civil aviation. A total of 45, all male, ATCs (two batches) were recruited as two mental fatigue groups and 23 executive staff acted as a control group for this study. The volunteers' urine samples were collected before and after their work. The samples were analyzed with liquid chromatography/mass spectrometry equipped with a polar, a weak polar, and a nonpolar column, respectively. Three candidate biomarkers were selected on the basis of statistical significance, coefficient of variance, and compared with data of the three groups. The results suggest that urine metabolites may provide a complete new clue from biochemistry to understand, monitor, and manage human mental fatigue.
机译:精神疲劳的特点是工作能力下降,对刺激的反应能力下降,通常伴有疲倦和嗜睡感。工作中的精神疲劳是一个严重的问题,可能引起安全问题,尤其是在运输系统中。据认为,精神疲劳是与道路和空中相关的事故和事件的直接或促成原因。心理研究表明,疲劳会导致工作效率降低,机敏,并降低心理表现。然而,对其潜在的生化机制了解甚少。我们假设人体是一个整体系统,精神疲劳不仅会导致人体心理变化,还会导致人体生化变化。这些生化变化可在代谢产物中检测到。我们采用了全局代谢组学分析方法来筛选民航中空中交通管制员(ATC)因精神疲劳而发生的生化变化。总共招募了45名男性ATC(两批)作为两个精神疲劳小组,并由23名执行人员作为该研究的对照组。志愿者在工作前后收集尿液样本。用分别配备有极性,弱极性和非极性柱的液相色谱/质谱法分析样品。根据统计学显着性,方差系数选择三个候选生物标记,并与三组数据进行比较。结果表明,尿液代谢物可能为生物化学提供一个全新的线索,以了解,监测和管理人类的精神疲劳。

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