Department for Psychotherapy and Biopsychosocial Health, Danube University Krems, 3500 Krems, Austria.
Section for Artificial Intelligence and Decision Support, Medical University of Vienna, 1090 Vienna, Austria.
Int J Mol Sci. 2020 Sep 30;21(19):7244. doi: 10.3390/ijms21197244.
Sleep-wake disorders are highly prevalent disorders, which can lead to negative effects on cognitive, emotional and interpersonal functioning, and can cause maladaptive metabolic changes. Recent studies support the notion that metabolic processes correlate with sleep. The study of metabolite biomarkers (metabolomics) in a large-scale manner offers unique opportunities to provide insights into the pathology of diseases by revealing alterations in metabolic pathways. This review aims to summarize the status of metabolomic analyses-based knowledge on sleep disorders and to present knowledge in understanding the metabolic role of sleep in psychiatric disorders. Overall, findings suggest that sleep-wake disorders lead to pronounced alterations in specific metabolic pathways, which might contribute to the association of sleep disorders with other psychiatric disorders and medical conditions. These alterations are mainly related to changes in the metabolism of branched-chain amino acids, as well as glucose and lipid metabolism. In insomnia, alterations in branched-chain amino acid and glucose metabolism were shown among studies. In obstructive sleep apnea, biomarkers related to lipid metabolism seem to be of special importance. Future studies are needed to examine severity, subtypes and treatment of sleep-wake disorders in the context of metabolite levels.
睡眠-觉醒障碍是一种高发疾病,会对认知、情绪和人际关系功能产生负面影响,并导致代谢适应不良变化。最近的研究支持这样一种观点,即代谢过程与睡眠有关。大规模的代谢产物生物标志物(代谢组学)研究为通过揭示代谢途径的改变来深入了解疾病的病理提供了独特的机会。本综述旨在总结基于代谢组学分析的睡眠障碍知识现状,并介绍在理解睡眠在精神障碍中的代谢作用方面的知识。总的来说,研究结果表明,睡眠-觉醒障碍导致特定代谢途径的明显改变,这可能导致睡眠障碍与其他精神障碍和躯体疾病的关联。这些改变主要与支链氨基酸以及葡萄糖和脂质代谢的变化有关。在失眠中,研究显示支链氨基酸和葡萄糖代谢发生改变。在阻塞性睡眠呼吸暂停中,与脂质代谢相关的生物标志物似乎尤为重要。未来的研究需要在代谢物水平上检查睡眠-觉醒障碍的严重程度、亚型和治疗。