Institute of Clinical Chemistry and Laboratory Medicine, University Medicine Greifswald, Greifswald, 17475, Germany.
Schwerpunktpraxis für Diabetes und Hormonerkrankungen, Erfurt, 99094, Germany.
Sci Rep. 2017 May 22;7(1):2235. doi: 10.1038/s41598-017-02367-y.
The role of androgens in metabolism with respect to sex-specific disease associations is poorly understood. Therefore, we aimed to provide molecular signatures in plasma and urine of androgen action in a sex-specific manner using state-of-the-art metabolomics techniques. Our study population consisted of 430 men and 343 women, aged 20-80 years, who were recruited for the cross-sectional population-based Study of Health in Pomerania (SHIP-TREND), Germany. We used linear regression models to identify associations between testosterone, androstenedione and dehydroepiandrosterone-sulfate (DHEAS) as well as sex hormone-binding globulin and plasma or urine metabolites measured by mass spectrometry. The analyses revealed major sex-specific differences in androgen-associated metabolites, particularly for levels of urate, lipids and metabolic surrogates of lifestyle factors, like cotinine or piperine. In women, in particular in the postmenopausal state, androgens showed a greater impact on the metabolome than in men (especially DHEAS and lipids were highly related in women). We observed a novel association of androstenedione on the metabolism of biogenic amines and only a small sex-overlap of associations within steroid metabolism. The present study yields new insights in the interaction between androgens and metabolism, especially about their implication in female metabolism.
雄激素在代谢方面对性别特异性疾病关联的作用知之甚少。因此,我们旨在使用最先进的代谢组学技术,以性别特异性的方式提供雄激素作用在血浆和尿液中的分子特征。我们的研究人群包括 430 名年龄在 20-80 岁之间的男性和 343 名女性,他们是德国基于人群的什未林-吕贝克健康研究(SHIP-TREND)的横断面研究招募的。我们使用线性回归模型来确定睾酮、雄烯二酮和脱氢表雄酮硫酸酯(DHEAS)以及性激素结合球蛋白与通过质谱测量的血浆或尿液代谢物之间的关联。分析显示雄激素相关代谢物存在主要的性别特异性差异,特别是尿酸、脂质和生活方式因素(如可替宁或胡椒碱)的代谢替代物水平。在女性中,尤其是在绝经后状态下,雄激素对代谢组的影响大于男性(特别是 DHEAS 和脂质在女性中高度相关)。我们观察到雄烯二酮对生物胺代谢的新关联,而类固醇代谢中的关联只有很小的性别重叠。本研究提供了雄激素与代谢之间相互作用的新见解,特别是它们在女性代谢中的作用。