Metabolic Response in Endothelial Cells to Catecholamine Stimulation Associated with Increased Vascular Permeability

内皮功能障碍 儿茶酚胺 一氧化氮 内皮干细胞 平衡 内皮 刺激 内分泌学 内科学 氧化应激 生物 化学 医学 生物化学 体外
作者
Adrián López García de Lomana,Arnar Ingi Vilhjálmsson,Sarah McGarrity,Rósa Sólveig Sigurðardóttir,Ósk Anuforo,Alexía Rós Viktorsdóttir,Aris Kotronoulas,Andreas Bergmann,Leifur Franzson,Haraldur Halldórsson,H Henriksen,Charles E. Wade,Pär I. Johansson,Óttar Rolfsson
出处
期刊:International Journal of Molecular Sciences [Multidisciplinary Digital Publishing Institute]
卷期号:23 (6): 3162-3162 被引量:5
标识
DOI:10.3390/ijms23063162
摘要

Disruption to endothelial cell homeostasis results in an extensive variety of human pathologies that are particularly relevant to major trauma. Circulating catecholamines, such as adrenaline and noradrenaline, activate endothelial adrenergic receptors triggering a potent response in endothelial function. The regulation of the endothelial cell metabolism is distinct and profoundly important to endothelium homeostasis. However, a precise catalogue of the metabolic alterations caused by sustained high catecholamine levels that results in endothelial dysfunction is still underexplored. Here, we uncover a set of up to 46 metabolites that exhibit a dose-response relationship to adrenaline-noradrenaline equimolar treatment. The identified metabolites align with the glutathione-ascorbate cycle and the nitric oxide biosynthesis pathway. Certain key metabolites, such as arginine and reduced glutathione, displayed a differential response to treatment in early (4 h) compared to late (24 h) stages of sustained stimulation, indicative of homeostatic metabolic feedback loops. Furthermore, we quantified an increase in the glucose consumption and aerobic respiration in endothelial cells upon catecholamine stimulation. Our results indicate that oxidative stress and nitric oxide metabolic pathways are downstream consequences of endothelial cell stimulation with sustained high levels of catecholamines. A precise understanding of the metabolic response in endothelial cells to pathological levels of catecholamines will facilitate the identification of more efficient clinical interventions in trauma patients.
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