Uncovering the Role of Selenite and Selenium Nanoparticles (SeNPs) in Adolescent Rat Adipose Tissue beyond Oxidative Balance: Transcriptomic Analysis.
Fátima NogalesEloísa PajueloInés Romero-HerreraOlimpia CarrerasFrancisco MerchánJose A Carrasco LopezMaría Luisa OjedaPublished in: Antioxidants (Basel, Switzerland) (2024)
Studies on adolescent rats, when body composition is changing deeply, reveal that the administration of sodium selenite and selenium nanoparticles (SeNPs), at the same dose, have opposite effects on adipogenesis in white adipose tissue (WAT). To investigate the mechanisms involved in these contrasting effects by means of transcriptomic analysis, three groups of male adolescent rats ( n = 18) were used: control (C), selenite supplemented (S), and SeNPs supplemented (NS). Both treated groups received a twofold increase in Se dose compared to the control group through water intake for three weeks. Following treatment, WAT was removed and frozen at -80 °C until subsequent use for RNA extraction, endogenous antioxidant enzymatic activities determination, and quantification of H 2 O 2 and malondialdehyde. NS rats displayed a larger number of differentially expressed genes and cellular processes impacted than S rats. Remarkably, these changes involved upregulation of gene expression associated with the immune system, catabolism, mitochondrial function, and oxidative balance. NS rats presented an increase in antioxidant enzymes activity, alongside an accumulation of H 2 O 2 and malondialdehyde levels. The expression level of 81 genes related to oxidative stress was significantly affected in NS rats. Analyzing the KEGG pathway enrichment revealed that NS rats exhibited increased activity in key catabolic pathways and decreased activity in crucial growth signaling processes. These changes contribute to the mass decrease in WAT found in NS rats. These results suggest a possible application of SeNPs in WAT reduction and induction of the immune response during adolescence.
Keyphrases
- oxidative stress
- adipose tissue
- body composition
- gene expression
- immune response
- dengue virus
- young adults
- poor prognosis
- genome wide
- mental health
- metabolic syndrome
- dna methylation
- high fat diet
- cell proliferation
- depressive symptoms
- dendritic cells
- type diabetes
- dna damage
- hydrogen peroxide
- high resolution
- smoking cessation
- skeletal muscle
- single cell
- toll like receptor
- transcription factor
- combination therapy
- resistance training
- weight loss
- heat stress
- weight gain
- heat shock
- childhood cancer