Neuroepigenetic Changes in DNA Methylation Affecting Diabetes-Induced Cognitive Impairment.
Valencia FernandesKumari PreetiAnika SoodKala P NairSabiya KhanByrathnahalli S Shankaranarayana RaoDharmendra Kumar KhatriShashi Bala SinghPublished in: Cellular and molecular neurobiology (2022)
Chronic diabetic conditions have been associated with certain cerebral complications, that include neurobehavioral dysfunctional patterns and morphological alterations of neurons, especially the hippocampus. Neuroanatomical studies done by the authors have shown decreased total dendritic length, intersections, dendritic length per branch order and nodes in the CA1 hippocampal region of the diabetic brain as compared to its normal control group, indicating reduced dendritic arborization of the hippocampal CA1 neurons. Epigenetic alterations in the brain are well known to affect age-associated disorders, however its association with the evolving diabetes-induced damage in the brain is still not fully understood. DNA hypermethylation within the neurons, tend to silent the gene expression of several regulatory proteins. The findings in the study have shown an increase in global DNA methylation in palmitic acid-induced lipotoxic Neuro-2a cells as well as within the diabetic mice brain. Inhibiting DNA methylation, restored the levels of HSF1 and certain HSPs, suggesting plausible effect of DNMTs in maintaining the proteostasis and synaptic fidelity. Neuroinflammation, as exhibited by the astrocyte activation (GFAP), were further significantly decreased in the 5-azadeoxycytidine group (DNMT inhibitor). This was further evidenced by decrease in proinflammatory cytokines TNF⍺, IL-6, and mediators iNOS and Phospho-NFkB. Our results suggest that changes in DNA methylation advocate epigenetic dysregulation and its involvement in disrupting the synaptic exactitude in the hippocampus of diabetic mice model, providing an insight into the pathophysiology of diabetes-induced neuroepigenetic changes.
Keyphrases
- dna methylation
- cerebral ischemia
- gene expression
- type diabetes
- genome wide
- cognitive impairment
- subarachnoid hemorrhage
- resting state
- white matter
- brain injury
- high glucose
- cardiovascular disease
- spinal cord
- diabetic rats
- blood brain barrier
- drug induced
- copy number
- functional connectivity
- glycemic control
- traumatic brain injury
- heat shock
- oxidative stress
- transcription factor
- endothelial cells
- early stage
- prefrontal cortex
- induced apoptosis
- rheumatoid arthritis
- nitric oxide
- single molecule
- metabolic syndrome
- protein kinase
- adipose tissue
- wound healing
- cell proliferation
- radiation therapy
- lymph node
- spinal cord injury
- sentinel lymph node
- stress induced
- circulating tumor cells
- skeletal muscle
- neoadjuvant chemotherapy
- nitric oxide synthase