Department of Biomedical and Clinical Sciences, Università di Milano, Via GB Grassi 74, 20157 Milano, Italy.
Int J Mol Sci. 2023 May 6;24(9):8351. doi: 10.3390/ijms24098351.
Magnesium deficiency is associated with a greater risk of developing cardiovascular diseases since this cation is fundamental in regulating vascular function. This clinical evidence is sustained by in vitro studies showing that culturing endothelial cells in low concentrations of magnesium promotes the acquisition of a pro-oxidant and pro-inflammatory phenotype. Here, we show that the increase in reactive oxygen species in endothelial cells in low-magnesium-containing medium is due to the upregulation of the pro-oxidant protein thioredoxin interacting protein (TXNIP), with a consequent accumulation of lipid droplets and increase in endothelial permeability through the downregulation and relocalization of junctional proteins. Silencing TXNIP restores the endothelial barrier and lipid content. Because (i) mitochondria serve multiple roles in shaping cell function, health and survival and (ii) mitochondria are the main intracellular stores of magnesium, it is of note that no significant alterations were detected in their morphology and dynamics in our experimental model. We conclude that TXNIP upregulation contributes to low-magnesium-induced endothelial dysfunction in vitro.
镁缺乏与心血管疾病风险增加相关,因为这种阳离子在调节血管功能方面至关重要。这一临床证据得到了体外研究的支持,这些研究表明,在低镁浓度下培养内皮细胞会促进获得促氧化和促炎表型。在这里,我们表明,低镁培养基中内皮细胞内活性氧的增加是由于促氧化剂蛋白硫氧还蛋白相互作用蛋白 (TXNIP) 的上调,导致脂滴积累和内皮通透性增加,通过连接蛋白的下调和重定位。沉默 TXNIP 可恢复内皮屏障和脂质含量。由于 (i) 线粒体在塑造细胞功能、健康和存活方面发挥着多种作用,以及 (ii) 线粒体是细胞内镁的主要储存库,因此值得注意的是,在我们的实验模型中未检测到其形态和动力学的显著变化。我们得出结论,TXNIP 的上调有助于体外低镁诱导的内皮功能障碍。