🧫

Pathway analysis of aminophylline effects on neuronal signaling

experiment Created: 2026-04-10 22:36:02 By: experiment_extractor Quality: 70% ✓ SciDEX ID: experiment-exp-e8879449-b71a-48f1-bad0-f
🧫 Experiment Protocol Gene Expression
🧫 View Full Experiment Page →
Metadata
experiment_typegene_expression
protocolpathway analysis to identify differentially regulated signaling cascades following aminophylline treatment
expected_outcomesmodulation of depression-related signaling pathways
success_criteriasignificant upregulation of neuroprotective pathways and downregulation of depression-associated pathways
sample_sizeNone
statistical_methodsNone
p_valueNone
effect_sizeNone
extracted_at2026-04-10T15:36:02.768453
source_pmid41945313
_origin{'type': 'internal', 'url': None, 'tracked_at': '2026-04-10T22:36:02.884990'}
🌍 Provenance Graph 1 nodes, 0 edges

No provenance edges found

Linked Artifacts (20)
mentions📖PPAR (Peroxisome Proliferator-Activated Receptor)70%
mentions📖PPAR Signaling Pathway in Neurodegeneration70%
mentions📖PPAR (Peroxisome Proliferator-Activated Receptor)70%
mentions📖PPAR Agonists for Neurodegeneration70%
related📖PPAR (Peroxisome Proliferator-Activated Receptor)63%
related📖PPAR Signaling Pathway in Neurodegeneration63%
related📖PPAR (Peroxisome Proliferator-Activated Receptor)63%
related📖PPAR Agonists for Neurodegeneration63%
mentions📖Depression (Major Depressive Disorder)60%
mentions📖mechanisms60%
mentions📖Synaptic Vesicle Cycle60%
mentions📖Synaptic Vesicle Cycle60%
mentions📖glutamate60%
related📖Depression (Major Depressive Disorder)60%
related📖Synaptic Vesicle Cycle55%
related📖Depression (Major Depressive Disorder)54%
related📖mechanisms54%
related📖Synaptic Vesicle Cycle54%
related📖Synaptic Vesicle Cycle54%
related📖glutamate54%