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Metabolite profiling was performed on metabolites extracted from the entorhinal cortex and primary visual cortex of 14-15 month old APOE3/3, APOE3/4 and APOE4/4 mice. Metabolites were run on a TOF Mass Spectrometer using an ANP column. Initial analysis was done in an untargeted manner, and processin...
2017-09-05 | MTBLS530 | MetaboLights
Not available
ORGANISM(S): Mus musculus 
Investigating the subcellular distribution and protein interaction of APOE and the modulation by cellular stress signals, we aimed to contribute to the elucidation of putative novel functions. We identified APOE as hepatic mitochondria-associated ER-membranes (MAM) protein, where it most likely inte...
ORGANISM(S): Homo sapiens (Human) 
2025-05-07 | PXD055281 | Pride
The multi-ligand Receptor for AGE (RAGE) contributes to atherosclerosis in apolipoprotein (ApoE) null mice in both the non-diabetic and diabetic states. Previous studies using soluble RAGE, the extracellular ligand-binding domain of RAGE, or homozygous RAGE null mice showed that blockade or deletion...
ORGANISM(S): Mus musculus 
Defects in homocysteine and folate metabolism are associated with increased risks for neural tube and congenital heart defects, cardiovascular disease and stroke, cancers, and neurodegeneration. In many but not all cases, dietary supplementation with folate significantly reduces the severity and in...
ORGANISM(S): Mus musculus 
Transcriptional profiling of aortic sinus atherosclerotic plaque macrophages obtained by laser capture microdissection from male ApoE deficient mice infected with 5x10(5) cfu serotype 4 Streptococcus pneumoniae via intranasal instillation (n=9) as compared with mice mock infected with PBS (n=11). Mi...
ORGANISM(S): Mus musculus 
Objective: Apolipoprotein E (Apo E) is a multifunctional protein, originally described in the context of lipoprotein metabolism and cardiovascular disease. More recently, anti-inflammatory functions of ApoE have been documented. ApoE was studied in the context of several inflammatory disorders, but ...
ORGANISM(S): Rattus norvegicus 

Reactive astrocytes play an important role in neurological diseases, but their molecular and functional phenotypes in epilepsy are unclear. Here, we show that in patients with temporal lobe epilepsy (TLE) and mouse models of epilepsy, excessive lipid accumulation in astrocytes leads to the format...

2025-07-04 | MTBLS8865 | MetaboLights
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