Stroke is the third leading cause of death and disability in US. Cerebral edema is a major consequence of brain ischemia. Despite the importance of cerebral edema, no effective pharmacological treatments have been developed.Previous research indicates that the aquaporin-4 channel facilitates water movement during cerebral edema formation. Mice lacking the normal expression of aquaporin-4 have decreased cerebral edema, reduced infarct formation and improved neurological outcome induced for classic models of cerebral edema (1, 2, 3). To our knowledge, no compounds that effectively block water permeability through aquaporin-4 have been discovered.My hypothesis is that an aquaporin-4 blocker would significantly decrease the cerebral edema forma...
Water homeostasis in the brain is of central physiologic and clinical importance. Neuronal activity ...
Cerebral edema contributes to morbidity and mortality in stroke. Aquaporins (AQPs)-1, -4, and -9 hav...
Aquaporin-4 water channels play a central role in brain water regulation in neurological disorders. ...
A hallmark of stroke is water accumulation (edema) resulting from dysregulation of osmotic homeostas...
A hallmark of stroke is water accumulation (edema) resulting from dysregulation of osmotic homeostas...
Astrocyte water channel aquaporin-4 (AQP4) facilitates water movement across the blood-brain barrier...
Aquaporin (AQP) water channels, essential for fluid homeostasis, are expressed in perivascular brain...
Aquaporin-4 (AQP4) is a water channel expressed in astrocyte end-feet lining the blood-brain barrier...
Aquaporin-4 (AQP4) is a family member of water-channel proteins and is dominantly expressed in the f...
Aquaporin-4 is a membrane channel protein that is highly expressed in brain astrocytes and facilitat...
A well controlled brain water homeostasis is of utmost importance for an appropriate control of neur...
Cerebrovascular diseases are conditions caused by problems with brain vasculature, which have a high...
Introduction. The glial cell water channel aquaporin-4 (AQP4) plays an important ro le in brain oede...
Aquaporin-4 (AQP4) is a water-channel protein expressed strongly in the brain, predominantly in astr...
Cerebral edema often manifests after the development of cerebrovascular disease, particularly in the...
Water homeostasis in the brain is of central physiologic and clinical importance. Neuronal activity ...
Cerebral edema contributes to morbidity and mortality in stroke. Aquaporins (AQPs)-1, -4, and -9 hav...
Aquaporin-4 water channels play a central role in brain water regulation in neurological disorders. ...
A hallmark of stroke is water accumulation (edema) resulting from dysregulation of osmotic homeostas...
A hallmark of stroke is water accumulation (edema) resulting from dysregulation of osmotic homeostas...
Astrocyte water channel aquaporin-4 (AQP4) facilitates water movement across the blood-brain barrier...
Aquaporin (AQP) water channels, essential for fluid homeostasis, are expressed in perivascular brain...
Aquaporin-4 (AQP4) is a water channel expressed in astrocyte end-feet lining the blood-brain barrier...
Aquaporin-4 (AQP4) is a family member of water-channel proteins and is dominantly expressed in the f...
Aquaporin-4 is a membrane channel protein that is highly expressed in brain astrocytes and facilitat...
A well controlled brain water homeostasis is of utmost importance for an appropriate control of neur...
Cerebrovascular diseases are conditions caused by problems with brain vasculature, which have a high...
Introduction. The glial cell water channel aquaporin-4 (AQP4) plays an important ro le in brain oede...
Aquaporin-4 (AQP4) is a water-channel protein expressed strongly in the brain, predominantly in astr...
Cerebral edema often manifests after the development of cerebrovascular disease, particularly in the...
Water homeostasis in the brain is of central physiologic and clinical importance. Neuronal activity ...
Cerebral edema contributes to morbidity and mortality in stroke. Aquaporins (AQPs)-1, -4, and -9 hav...
Aquaporin-4 water channels play a central role in brain water regulation in neurological disorders. ...