Impact of Inducible Nitric Oxide Synthase Activation on Endothelial Behavior under Magnesium Deficiency.
Giorgia FedeleSara CastiglioniValentina TrapaniIsabella ZafferriMarco BartoliniSilvana M CasatiPierangela CiuffredaFederica I WolfJeanette A MaierPublished in: Nutrients (2024)
Endothelial dysfunction is a crucial event in the early pathogenesis of cardiovascular diseases and is linked to magnesium (Mg) deficiency. Indeed, in endothelial cells, low Mg levels promote the acquisition of a pro-inflammatory and pro-atherogenic phenotype. This paper investigates the mechanisms by which Mg deficiency promotes oxidative stress and affects endothelial behavior in human umbilical vascular endothelial cells (HUVECs). Our data show that low Mg levels trigger oxidative stress initially by increasing NAPDH oxidase activity and then by upregulating the pro-oxidant thioredoxin-interacting protein TXNIP. The overproduction of reactive oxygen species (ROS) activates NF-κB, leading to its increased binding to the inducible nitric oxide synthase (iNOS) promoter, with the consequent increase in iNOS expression. The increased levels of nitric oxide (NO) generated by upregulated iNOS contribute to disrupting endothelial cell function by inhibiting growth and increasing permeability. In conclusion, we provide evidence that multiple mechanisms contribute to generate a pro-oxidant state under low-Mg conditions, ultimately affecting endothelial physiology. These data add support to the notion that adequate Mg levels play a significant role in preserving cardiovascular health and may suggest new approaches to prevent or manage cardiovascular diseases.
Keyphrases
- nitric oxide synthase
- endothelial cells
- nitric oxide
- oxidative stress
- cardiovascular disease
- anti inflammatory
- reactive oxygen species
- high glucose
- dna damage
- signaling pathway
- hydrogen peroxide
- vascular endothelial growth factor
- electronic health record
- cell death
- dna methylation
- type diabetes
- replacement therapy
- gene expression
- big data
- induced apoptosis
- transcription factor
- small molecule
- ischemia reperfusion injury
- immune response
- endoplasmic reticulum stress
- cardiovascular events
- nlrp inflammasome
- lps induced
- coronary artery disease
- metabolic syndrome
- amino acid
- artificial intelligence
- long non coding rna