Effects of Millimolar Steady-State Hydrogen Peroxide Exposure on Inflammatory and Redox Gene Expression in Immune Cells from Humans with Metabolic Syndrome.
Carla Busquets-CortésXavier CapóEmma ArgelichMiguel D FerrerDavid MateosCristina BouzasManuela AbbateJosep Antonio TurAntoni SuredaAntoni Pons-BiescasPublished in: Nutrients (2018)
Reactive oxygen species (ROS) such as hydrogen peroxide (H₂O₂) can exert opposed effects depending on the dosage: low levels can be involved in signalling and adaptive processes, while higher levels can exert deleterious effects in cells and tissues. Our aim was to emulate a chronic ex vivo oxidative stress situation through a 2 h exposure of immune cells to sustained H₂O₂ produced by glucose oxidase (GOX), at high or low production rate, in order to determine dissimilar responses of peripheral blood mononuclear cells (PBMCs) and neutrophils on ROS and cytokine production, and mitochondrial dynamics-related proteins, pro/anti-inflammatory and anti-oxidant gene expression. Immune cells were obtained from subjects with metabolic syndrome. H₂O₂ at low concentrations can trigger a transient anti-inflammatory adiponectin secretion and reduced gene expression of toll-like receptors (TLRs) in PBMCs but may act as a stimulator of proinflammatory genes (IL6, IL8) and mitochondrial dynamics-related proteins (Mtf2, NRF2, Tfam). H₂O₂ at a high concentration enhances the expression of pro-inflammatory genes (TLR2 and IL1β) and diminishes the expression of mitochondrial dynamics-related proteins (Mtf1, Tfam) and antioxidant enzymes (Cu/Zn SOD) in PBMCs. The GOX treatments produce dissimilar changes in immune cells: Neutrophils were more resistant to H₂O₂ effects and exhibited a more constant response in terms of gene expression than PBMCs. We observe emerging roles of H₂O₂ in mitochondrial dynamics and redox and inflammation processes in immune cells.
Keyphrases
- oxidative stress
- gene expression
- hydrogen peroxide
- anti inflammatory
- metabolic syndrome
- induced apoptosis
- dna damage
- reactive oxygen species
- dna methylation
- nitric oxide
- ischemia reperfusion injury
- poor prognosis
- genome wide
- insulin resistance
- cell death
- risk assessment
- immune response
- toll like receptor
- cardiovascular disease
- cell cycle arrest
- blood pressure
- skeletal muscle
- adipose tissue
- amyotrophic lateral sclerosis
- pi k akt
- brain injury
- signaling pathway
- blood brain barrier