ArticleBMC geriatrics2024
Common molecular and pathophysiological underpinnings of delirium and Alzheimer's disease: molecular signatures and therapeutic indications.
Article in BMC geriatrics, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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Who cites it
11 citing papers in PubMed.
- Epigenetically driven impairment of BDNF-ARC signaling contributes to circadian and cognitive disarray in a mouse model of postoperative delirium.Alzheimer's & dementia : the journal of the Alzheimer's Association · 2026Article
- Integrated transcriptomic analysis of the temporal cortex identifies CRH and GAD2 as neuropathological markers and reveals altered immune microenvironment in Alzheimer's disease.Scientific reports · 2026Article
- Identification of bacterial key genes and therapeutic targets in hypertensive patients with type 2 diabetes through bioinformatics analysis.Scientific reports · 2026Article
- Agitation, Alzheimer's disease, and autophagy: mechanistic insights into aging pathways, gut microbiome, and artificial intelligence.Frontiers in immunology · 2026Review
- Artificial intelligence in drug development for delirium and Alzheimer's disease.Acta pharmaceutica Sinica. B · 2025Review
- When There's Smoke, Look for the Fire: The Complex Interplay Between Delirium and Dementia.American journal of respiratory and critical care medicine · 2025Article
- Novel insights from comprehensive analysis: The role of cuproptosis and peripheral immune infiltration in Alzheimer's disease.PloS one · 2025Article
- Anxiety and Depression: Triggers for Cognitive Loss, Alzheimer's Disease, and Neurodegeneration.Current neurovascular research · 2025Article
- Cannabis and Cannabidiol: Pioneering Treatment for the Nervous System with Alzheimer's Disease and Peripheral Organ Involvement with Nonalcoholic Fatty Liver Disease (NAFLD).Current neurovascular research · 2025Article
- Cardiovascular and nonalcoholic fatty liver disease: Sharing common ground through SIRT1 pathways.World journal of cardiology · 2024Review
- Article
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Authors and funding
5 authors.
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Abstract
backgroundDelirium and Alzheimer's disease (AD) are common causes of cognitive dysfunction among older adults. These neurodegenerative diseases share a common and complex relationship, and can occur individually or concurrently, increasing the chance of permanent mental dysfunction. However, the common molecular pathophysiology, key proteomic biomarkers, and functional pathways are largely unknown, whereby delirium is superimposed on AD and dementia.
methodsWe employed an integrated bioinformatics and system biology analysis approach to decipher such common key proteomic signatures, pathophysiological links between delirium and AD by analyzing the gene expression data of AD-affected human brain samples and comparing them with delirium-associated proteins. The present study identified the common drug target hub-proteins examining the protein-protein interaction (PPI) and gene regulatory network analysis. The functional enrichment and pathway analysis was conducted to reveal the common pathophysiological relationship. Finally, the molecular docking and dynamic simulation was used to computationally identify and validate the potential drug target and repurposable drugs for delirium and AD.
resultsWe detected 99 shared differentially expressed genes (sDEGs) associated with AD and delirium. The sDEGs-set enrichment analysis detected the transmission across chemical synapses, neurodegeneration pathways, neuroinflammation and glutamatergic signaling pathway, oxidative stress, and BDNF signaling pathway as the most significant signaling pathways shared by delirium and AD. The disease-sDEGs interaction analysis highlighted the other disease risk factors with delirium and AD development and progression. Among the sDEGs of delirium and AD, the top 10 hub-proteins including ALB, APP, BDNF, CREB1, DLG4, GAD1, GAD2, GFAP, GRIN2B and GRIN2A were found by the PPI network analysis. Based on the maximum molecular docking binding affinities and molecular dynamic simulation (100 ns) results, the ALB and GAD2 were found as prominent drug target proteins when tacrine and donepezil were identified as potential drug candidates for delirium and AD.
conclusionThe study outlined the common key biomolecules and biological pathways shared by delirium and AD. The computationally reported potential drug molecules need a deeper investigation including clinical trials to validate their effectiveness. The outcomes from this study will help to understand the typical pathophysiological relationship between delirium and AD and flag future therapeutic development research for delirium.
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