Sort   by:  
 Page size 
Comparisons between the sample groups (normal elderly control (NEC) and Alzheimer disease (AD)) allowed the identification of genes with disease expression patterns associated with the glutathione S-transferase M3 single nucleotide polymorphism rs7483. Keywords: biological repeat Peripheral blood mo...
ORGANISM(S): Homo sapiens 
Amyloid-M-CM-^_ (AM-CM-^_) plaques are pathological hallmarks of Alzheimer disease. However, the precise neuropathological changes that occur in brain in response to amyloid deposition are largely unknown. To study the molecular mechanism(s) responsible for AM-CM-^_-mediated neuropathology, we perfo...
ORGANISM(S): Mus musculus 
Amyloid-M-CM-^_ (AM-CM-^_) plaques are pathological hallmarks of Alzheimer disease. However, the precise neuropathological changes that occur in brain in response to amyloid deposition are largely unknown. To study the molecular mechanism(s) responsible for AM-CM-^_-mediated neuropathology, we perfo...
ORGANISM(S): Mus musculus 

Increasing evidence indicates that shifts in brain polysaccharide metabolism can influence the progression of multiple neurodegenerative diseases. Here we perform MALDI-MSI analysis of glycogen at different chain lengths in patients at different stages of Alzheimer's Disease. We look at frontal c...

2026-06-12 | MTBLS14754 | MetaboLights
The enigma that is Alzheimer's disease (AD) continues to present daunting challenges for effective therapeutic intervention. The lack of disease-modifying therapies may, in part, be attributable to the narrow research focus employed to understand this complex disease. Most studies into disease patho...
ORGANISM(S): Homo sapiens 
Ion channel splice array data from cerebellum brain tissue samples collected from Alzheimer's disease patients. Temporal cortex (Alzheimer's disease affected brain tissue structure) and cerebellum (Alzheimer's disease unaffected brain tissue structure) samples from control subjects were compared to ...
ORGANISM(S): Homo sapiens 

Bacteroides thetaiotaomicron (B. theta) dominates the gut microbiome of most mammals. This strictly anaerobic gut symbiont colonizes the mucus layer of host intestinal epithelial cells in both healthy and diseased conditions. Reduced neuronal and vagal afferent innervation observed in ge...

2025-12-15 | MTBLS12896 | MetaboLights
Sort   by:  
 Page size