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Neonatal hypoxic-ischemic encephalopathy (HIE) refers to nervous system damage caused by perinatal hypoxia, which is the major cause of long-term neuro-developmental disorders in surviving infants. However, the mechanisms still require further investigation. In this study, we found that the butan...

2022-10-12 | MTBLS4933 | MetaboLights

Neonatal hypoxic-ischemic encephalopathy (HIE) refers to nervous system damage caused by perinatal hypoxia, which is the major cause of long-term neuro-developmental disorders in surviving infants. However, the mechanisms still require further investigation. In this study, we found that the butan...

2022-10-12 | MTBLS4932 | MetaboLights
Cerebral ischemia and aging induce local and systemic effects, and impact severity of stroke outcome. We performed comprehensive metabolic profiling to detect metabolites in brain, plasma, and liver as a function of aging and ischemia/reperfusion (IR). Ischemic stroke was induced by middle cerebral ...
2019-02-01 | MTBLS516 | MetaboLights
Hypoxic-Ischemic Encephalopathy (HIE) is one of the most relevant contributors to neurological disability in term infants. We hypothesized that clinical outcomes of newborns with (HIE) can be associated with changes at plasma metabolic level enabling the detection of brain injury. Plasma samples of ...
2021-11-09 | MTBLS1041 | MetaboLights

Abstract: 

Background and Objective. As a prevalent cerebrovascular disorder, the association between ischemic stroke and gut microbiota has garnered increasing attention. Recent studies have confirmed that astaxanthin exhibits significant protective effects against ischemic stroke. Ho...

2025-10-15 | MTBLS13080 | MetaboLights

Ischemic stroke recovery involves dynamic interactions between the central nervous system and infiltrating immune cells. Peripheral immune cells compete with resident microglia for spatial niches in the brain, but how modulating this balance affects recovery remains unclear. Here, we use PLX5622 ...

2025-02-20 | MTBLS12240 | MetaboLights
Microglia are resident CNS immune cells that are active sensors in healthy brain and versatile effectors under pathological conditions. Cerebral ischemia induces a robust neuroinflammatory response that includes marked changes in the gene expression and phenotypic profile of a variety of endogenous ...
ORGANISM(S): Mus musculus 

Metabolomic analysis was conducted on serum samples from acute ischemic stroke (AIS) patients to identify altered metabolites.

2026-01-21 | MTBLS11987 | MetaboLights
Epigenetic modifications, such as cytosine methylation and histone modification, have been shown involved in the pathology of ischemic brain injury. Recent works have implicated 5-hydroxymethylcytosine (5hmC), a DNA base derived from 5-methylcytosine (5mC) through the oxidation by Ten-Eleven Translo...
ORGANISM(S): Mus musculus 

Hua-Feng-Dan is a traditional Chinese medicine compound used to treat ischemic stroke, but little is known about its therapeutic mechanism. This study explored whether and how the mechanism involves readjustment of gut microbiota. Rats were subjected to middle cerebral artery occlusion as a model...

2025-01-06 | MTBLS10818 | MetaboLights
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