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Metabolic patterns in insulin-resistant male hypogonadism

机译:胰岛素抵抗男性性腺功能减退症的代谢模式

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摘要

Male hypogonadism associated with insulin resistance (IR) very often leads to metabolic syndrome, at variance with hypogonadism in its first stadium of insulin sensitivity (IS). A plasma metabolomic investigation of these patients can provide useful information in comparison with the values of IS patients. To this aim plasma from insulin-resistant males with hypogonadism were analysed by using ultra high-performance liquid chromatography (UHPLC) and high-resolution mass spectrometry (HRMS). Thus, metabolites were compared to the controls through multivariate statistical analysis and grouped by metabolic pathways. Metabolite database searches and pathway analyses identified imbalances in 18–20 metabolic pathways. Glucose metabolism (e.g., glycolysis and the Krebs cycle) is fuelled by amino acids degradation, in particular of branched amino acids, in individuals with lean body mass. Gluconeogenesis is strongly activated. Some crucial pathways such as glycerol are skewed. Mitochondrial electron transport is affected with a reduction in ATP production. Beta-oxidation of short and medium chain fatty acids did not represent an energy source in hypogonadism, at variance with long and branched fatty acids, justifying the increase in fat mass. Carnosine and β-alanine are strongly reduced resulting in increased fatigue and mental confusion. A comparison of IR with IS male hypogonadism will contribute to a better understanding of how these two hormones work in synergy or antagonise each other in humans. It could also help to select patients who will respond to hormone treatment, and provide accurate biomarkers to measure the response to treatment eventually leading to better strategies in preventing systemic complications in patients not fit for hormone replacement therapy.
机译:与胰岛素抵抗(IR)相关的男性性腺功能减退症通常会导致代谢综合征,而在其胰岛素敏感性(IS)的第一个场馆就出现性腺功能减退症。这些患者的血浆代谢组学研究与IS患者的价值相比可提供有用的信息。为此,使用超高效液相色谱(UHPLC)和高分辨率质谱(HRMS)分析了患有性腺功能低下的胰岛素抵抗男性的血浆。因此,通过多元统计分析将代谢物与对照进行比较,并按代谢途径进行分组。代谢物数据库搜索和途径分析确定了18–20个代谢途径的失衡。在具有瘦体重的个体中,氨基酸尤其是支链氨基酸的降解会加剧葡萄糖的代谢(例如,糖酵解和克雷布斯循环)。糖原异生被强烈激活。一些关键的途径(如甘油)是偏斜的。线粒体电子运输受到ATP产量下降的影响。短链和中链脂肪酸的β-氧化反应并不代表性腺功能减退症的能源,与长链和支链脂肪酸不同,这证明了脂肪量的增加。肌肽和β-丙氨酸被大大降低,导致疲劳和精神错乱加剧。将IR与IS男性性腺功能减退症进行比较将有助于更好地了解这两种激素在人类中如何协同作用或相互拮抗。它还可以帮助选择对激素治疗有反应的患者,并提供准确的生物标记物以测量对治疗的反应,最终为预防不适合激素替代治疗的患者的全身并发症提供更好的策略。

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