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Links from GEO DataSets

Items: 4

1.

Global transcriptomic profiling of ischemic/reperfusion injury in an in vivo mouse model.

(Submitter supplied) This SuperSeries is composed of the SubSeries listed below.
Organism:
Mus musculus
Type:
Expression profiling by array
Platform:
GPL6885
64 Samples
Download data
Series
Accession:
GSE23163
ID:
200023163
2.

Global transcriptomic profiling of ischemic/reperfusion injury in an in vivo Gpx1 -/- transgenic mouse model.

(Submitter supplied) Glutathione peroxidase (Gpx) is a selenium-containing enzyme that catalyses the reduction of a variety of biological peroxides at the expense of reduced glutathione (GSH). Gpx1 is the most abundant isoform and its role has been implicated in neurodegenerative disorders such as Parkinson’s disease (PD), dementia with Lewy bodies tissue (DLB) (Power and Blumbergs, 2009) and traumatic brain injury (Tsuru-Aoyagi et al., 2009). more...
Organism:
Mus musculus
Type:
Expression profiling by array
Platform:
GPL6885
32 Samples
Download data: TXT
Series
Accession:
GSE23162
ID:
200023162
3.

Global transcriptomic profiling of ischemic/reperfusion injury in an in vivo wild-type mouse model.

(Submitter supplied) Ischemic stroke triggers severe focal hypoperfusion accompanied with deprivation of oxygen and glucose to the cerebral tissue, together with loss of ATP, depolorization of neurons, elevated extracellular potassium concentration, and subsequently leads to excitotoxicity as well as increased oxidative stress promoting microvascular injury, blood-brain-barrier deregulation, post-ischemic inflammation and eventually the consequential neurological deficit. more...
Organism:
Mus musculus
Type:
Expression profiling by array
Platform:
GPL6885
32 Samples
Download data: TXT
Series
Accession:
GSE23160
ID:
200023160
4.

Single-cell analyses reveal the dynamic functions of Itgb2+ microglia subclusters at different stages of cerebral ischemia-reperfusion injury in transient middle cerebral occlusion mice model

(Submitter supplied) The underlying pathophysiological mechanisms of cerebral ischemia-reperfusion injury (CIRI) is intricate, and current studies suggest that neuron, astrocyte, microglia, endothelial cell, and pericyte all have different phenotypic changes of specific cell types after ischemic stroke. And microglia account for the largest proportion after CIRI. Previous transcriptomic studies of ischemic stroke have typically focused on the 24 hours after CIRI, obscuring the dynamics of cellular subclusters throughout the disease process. more...
Organism:
Mus musculus
Type:
Expression profiling by high throughput sequencing
Platform:
GPL24247
4 Samples
Download data: MTX, TSV
Series
Accession:
GSE227651
ID:
200227651
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