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Preferential activation of HIF-2α adaptive signalling in neuronal-like cells in response to acute hypoxia (2017)
Journal Article
Martín-Aragón Baudel, M. A. S., Rae, M. T., Darlison, M. G., Poole, A. V., & Fraser, J. A. (2017). Preferential activation of HIF-2α adaptive signalling in neuronal-like cells in response to acute hypoxia. PLOS ONE, 12(10), Article e0185664. https://do

Stroke causes severe neuronal damage as disrupted cerebral blood flow starves neurons of oxygen and glucose. The hypoxia inducible factors (HIF-1α and HIF-2α) orchestrate oxygen homeostasis and regulate specific aspects of hypoxic adaptation. Here we... Read More about Preferential activation of HIF-2α adaptive signalling in neuronal-like cells in response to acute hypoxia.

Preferential activation of HIF-2 adaptive mechanisms in neuronal-like cells in response to hypoxia (2017)
Presentation / Conference Contribution
Fraser, J., Baudel, M., Rae, M., Darlison, M., & Poole, A. (2017, April). Preferential activation of HIF-2 adaptive mechanisms in neuronal-like cells in response to hypoxia. Poster presented at British Neuroscience Association - festival of neuroscience 2

Stroke is a leading cause of death and disability worldwide. Blockage, or occlusion, of cerebral arteries causes irreversible neuronal damage as disrupted blood flow starves neurones of oxygen and glucose. The hypoxia inducible factors (HIFs) are mas... Read More about Preferential activation of HIF-2 adaptive mechanisms in neuronal-like cells in response to hypoxia.

The expression of the chloride co-transporters NKCC1 and KCC2 is reversed in the penumbra following (2017)
Presentation / Conference Contribution
Baudel, M., Rae, M., Fraser, J., & Poole, A. (2017). The expression of the chloride co-transporters NKCC1 and KCC2 is reversed in the penumbra following. In Brain and Neuroscience: BNA 2017 Festival of Neuroscience: Abstract Book

Stroke is one of the major causes of death and disability worldwide. The harm caused by the interruption of blood flow to the brain unfolds in the subsequent hours and days, so it is critical to identify new therapeutic targets that could reduce neur... Read More about The expression of the chloride co-transporters NKCC1 and KCC2 is reversed in the penumbra following.