Incretin drugs effect on epigenetic machinery: New potential therapeutic implications in preventing vascular diabetic complications.
Lucia ScisciolaMaria Rosaria RizzoVittoria CataldoRosaria Anna FontanellaMaria Luisa BalestrieriNunzia D'OnofrioRaffaele MarfellaGiuseppe PaolissoMichelangela BarbieriPublished in: FASEB journal : official publication of the Federation of American Societies for Experimental Biology (2020)
The effect of GLP-1R agonists on DNA methylation levels of NF-κB and SOD2 genes in human aortic endothelial cells exposed to high glucose and in diabetic patients treated and not with incretin-based drugs, was evaluated. Methylation levels, mRNA and protein expression of NF-κB and SOD2 genes were measured in human endothelial cells exposed to high glucose for 7 days and treated with GLP-1R agonists. Methylation status of NF-κB and SOD2 promoter was also analyzed in 128 diabetics and 116 nondiabetics and correlated with intima media thickness (ITM), an early marker of atherosclerotic process. Cells exposed to high glucose showed lower NF-κB and SOD2 methylation levels, increased NF-κB and reduced SOD2 expression compared to normal glucose cells. Co-treatment with GLP-1 agonists prevented methylation and genes expression changes induced by high glucose. Both high glucose and incretins exposure increased DNA methyltransferases and demethylases levels. In diabetics, incretin treatment resulted a significant predictor of NF-κB DNA methylation, independently of age, sex, body mass index (BMI), glucose and plasma lipid levels. NF-κB DNA methylation inversely correlated with IMT after adjusting for multiple covariates. Our results firstly provide new evidences of an additional mechanism by which incretin drugs could prevent vascular diabetic complications.
Keyphrases
- high glucose
- endothelial cells
- dna methylation
- genome wide
- signaling pathway
- lps induced
- pi k akt
- induced apoptosis
- body mass index
- oxidative stress
- nuclear factor
- gene expression
- amyotrophic lateral sclerosis
- cell cycle arrest
- inflammatory response
- type diabetes
- metabolic syndrome
- poor prognosis
- physical activity
- cell proliferation
- risk factors
- cardiovascular disease
- skeletal muscle
- atrial fibrillation
- transcription factor
- weight gain
- aortic valve
- adipose tissue
- heart failure
- bioinformatics analysis
- cell free
- circulating tumor
- single molecule
- immune response
- pulmonary arterial hypertension
- toll like receptor
- glycemic control
- long non coding rna