Proteomic Signature and mRNA Expression in Hippocampus of SAMP8 and SAMR1 Mice during Aging.
Marcella RealeErica CostantiniLisa AielliFabrizio Di GiuseppeStefania AngelucciMohammad Amjad KamalNigel H GreigPublished in: International journal of molecular sciences (2022)
Aging is a complex process often accompanied by cognitive decline that represents a risk factor for many neurodegenerative disorders including Alzheimer's and Parkinson's disease. The molecular mechanisms involved in age-related cognitive decline are not yet fully understood, although increased neuroinflammation is considered to play a significant role. In this study, we characterized a proteomic view of the hippocampus of the senescence-accelerated mouse prone-8 (SAMP8), a model of enhanced senescence, in comparison with the senescence-accelerated-resistant mouse (SAMR1), a model of normal aging. We additionally investigated inflammatory cytokines and cholinergic components gene expression during aging in the mouse brain tissues. Proteomic data defined the expression of key proteins involved in metabolic and cellular processes in neuronal and glial cells of the hippocampus. Gene Ontology revealed that most of the differentially expressed proteins are involved in the cytoskeleton and cell motility regulation. Molecular analysis results showed that both inflammatory cytokines and cholinergic components are differentially expressed during aging, with a downward trend of cholinergic receptors and esterase enzymes expression, in contrast to an upward trend of inflammatory cytokines in the hippocampus of SAMP8. Together, our results support the important role of the cholinergic and cytokine systems in the aging of the murine brain.
Keyphrases
- cognitive decline
- mild cognitive impairment
- cerebral ischemia
- gene expression
- poor prognosis
- cognitive impairment
- dna damage
- endothelial cells
- single cell
- magnetic resonance
- dna methylation
- stem cells
- stress induced
- prefrontal cortex
- induced apoptosis
- machine learning
- metabolic syndrome
- genome wide
- white matter
- label free
- blood brain barrier
- pseudomonas aeruginosa
- traumatic brain injury
- binding protein
- cystic fibrosis
- insulin resistance
- cell death
- mass spectrometry
- oxidative stress
- cell therapy
- contrast enhanced
- magnetic resonance imaging
- functional connectivity
- copy number
- skeletal muscle
- resting state
- high fat diet induced