AbstractAimsHyperoxic breathing might lead to redox imbalance and signaling changes that affect cerebral function. Paradoxically, hypoxic breathing is also believed to cause oxidative stress. Our aim is to dissect the cerebral tissue responses to altered O2 fractions in breathed air by assessing the redox imbalance and the recruitment of the hypoxia signaling pathways.ResultsMice were exposed to mild hypoxia (10%O2), normoxia (21%O2) or mild hyperoxia (30%O2) for 28 days, sacrificed and brain tissue excised and analyzed. Although one might expect linear responses to %O2, only few of the examined variables exhibited this pattern, including neuroprotective phospho- protein kinase B and the erythropoietin receptor. The major reactive oxygen sp...
: Significance: Oxygen (O2) sensing is the fundamental process through which organisms respond to ch...
Ischemia is a major cause of brain damage, and patient management is complicated by the paradoxical ...
The mammalian brain is highly vulnerable to oxygen deprivation, yet the mechanism underlying the bra...
Aims Hyperoxic breathing might lead to redox imbalance and signaling changes that affect cerebral fu...
AbstractAimsHyperoxic breathing might lead to redox imbalance and signaling changes that affect cere...
Two antithetic terms, hypoxia and hyperoxia, i.e., insufficient and excess oxygen availability with ...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Two antithetic terms, hypoxia and hyperoxia, i.e., insufficient and excess oxygen availability with ...
Stroke causes severe neuronal damage as disrupted cerebral blood flow starves neurons of oxygen and ...
Apart from enhancing red blood cell production, erythropoietin (Epo) has been shown to modulate the ...
AbstractAccumulating evidence suggests that hypoxia-inducible factor-2 (HIF-2) is important for the ...
Hypoxic hypoxia (inspiratory hypoxia) stimulates an increase in cerebral blood flow (CBF) maintainin...
We previously reported that hyperbaric hyperoxia stimulates firing rate of putative CO2-chemorecepto...
In the CNS neurons are highly sensitive to the availability of oxygen. In conditions where oxygen av...
Maintaining brain slices in 95%O2 produces hyperoxia, oxidative stress and increased cell death, whe...
: Significance: Oxygen (O2) sensing is the fundamental process through which organisms respond to ch...
Ischemia is a major cause of brain damage, and patient management is complicated by the paradoxical ...
The mammalian brain is highly vulnerable to oxygen deprivation, yet the mechanism underlying the bra...
Aims Hyperoxic breathing might lead to redox imbalance and signaling changes that affect cerebral fu...
AbstractAimsHyperoxic breathing might lead to redox imbalance and signaling changes that affect cere...
Two antithetic terms, hypoxia and hyperoxia, i.e., insufficient and excess oxygen availability with ...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Two antithetic terms, hypoxia and hyperoxia, i.e., insufficient and excess oxygen availability with ...
Stroke causes severe neuronal damage as disrupted cerebral blood flow starves neurons of oxygen and ...
Apart from enhancing red blood cell production, erythropoietin (Epo) has been shown to modulate the ...
AbstractAccumulating evidence suggests that hypoxia-inducible factor-2 (HIF-2) is important for the ...
Hypoxic hypoxia (inspiratory hypoxia) stimulates an increase in cerebral blood flow (CBF) maintainin...
We previously reported that hyperbaric hyperoxia stimulates firing rate of putative CO2-chemorecepto...
In the CNS neurons are highly sensitive to the availability of oxygen. In conditions where oxygen av...
Maintaining brain slices in 95%O2 produces hyperoxia, oxidative stress and increased cell death, whe...
: Significance: Oxygen (O2) sensing is the fundamental process through which organisms respond to ch...
Ischemia is a major cause of brain damage, and patient management is complicated by the paradoxical ...
The mammalian brain is highly vulnerable to oxygen deprivation, yet the mechanism underlying the bra...