BACKGROUND: Cerebral ischemia is associated with the activation of glial cells, infiltration of leukocytes and an increase in inflammatory mediators in the ischemic brain and systemic circulation. How this inflammatory response influences lesion size and neurological outcome remains unclear. D-JNKI1, an inhibitor of the c-Jun N-terminal kinase pathway, is strongly neuroprotective in animal models of stroke. Intriguingly, the protection mediated by D-JNKI1 is high even with intravenous administration at very low doses with undetectable drug levels in the brain, pointing to a systemic mode of action, perhaps on inflammation. FINDINGS: We evaluated whether D-JNKI1, administered intravenously 3 h after the onset of middle cerebral artery occlus...
Brain inflammation contributes to ischaemic and reperfusion injury, and thus worsens outcome after s...
Background: In intracerebral hemorrhage (ICH), a subtype of stroke, the bloodentry into the brain tr...
Our previous study demonstrated that the inhibition of interleukin-1Β (IL-1Β) reduces ischemic brain...
Abstract Background Cerebral ischemia is associated with the activation of glial cells, infiltration...
The c-Jun-N-terminal kinase signaling pathway (JNK) is highly activated during ischemia and plays an...
The c-Jun N-terminal kinase (JNK) signaling pathway plays a critical role in ischemic brain injury. ...
The c-Jun N-terminal kinase (JNK) signaling pathway plays a critical role in ischemic brain injury. ...
BACKGROUND AND PURPOSE: In 2 models of severe ischemic injury, we have evaluated the neuroprotective...
C-Jun N-terminal kinase (JNK) is activated by various brain insults and is implicated in neuronal in...
Background: Intracerebral hemorrhage (ICH) is a subtype of stroke characterized by a haematoma withi...
Excitotoxicity following cerebral ischemia elicits a molecular cascade, which leads to neuronal deat...
The c-Jun-N-terminal kinase (JNK) plays a key role in ischemia-induced neuronal death. The peptide D...
Cerebral ischemia is a devastating disease that affects many people worldwide every year. The neurod...
The c-Jun-N-terminal kinase (JNK) pathway has been shown to play an important role in excitotoxic ne...
In this article, we review the literature regarding the role of c-Jun N-terminal kinases(JNKs) in ce...
Brain inflammation contributes to ischaemic and reperfusion injury, and thus worsens outcome after s...
Background: In intracerebral hemorrhage (ICH), a subtype of stroke, the bloodentry into the brain tr...
Our previous study demonstrated that the inhibition of interleukin-1Β (IL-1Β) reduces ischemic brain...
Abstract Background Cerebral ischemia is associated with the activation of glial cells, infiltration...
The c-Jun-N-terminal kinase signaling pathway (JNK) is highly activated during ischemia and plays an...
The c-Jun N-terminal kinase (JNK) signaling pathway plays a critical role in ischemic brain injury. ...
The c-Jun N-terminal kinase (JNK) signaling pathway plays a critical role in ischemic brain injury. ...
BACKGROUND AND PURPOSE: In 2 models of severe ischemic injury, we have evaluated the neuroprotective...
C-Jun N-terminal kinase (JNK) is activated by various brain insults and is implicated in neuronal in...
Background: Intracerebral hemorrhage (ICH) is a subtype of stroke characterized by a haematoma withi...
Excitotoxicity following cerebral ischemia elicits a molecular cascade, which leads to neuronal deat...
The c-Jun-N-terminal kinase (JNK) plays a key role in ischemia-induced neuronal death. The peptide D...
Cerebral ischemia is a devastating disease that affects many people worldwide every year. The neurod...
The c-Jun-N-terminal kinase (JNK) pathway has been shown to play an important role in excitotoxic ne...
In this article, we review the literature regarding the role of c-Jun N-terminal kinases(JNKs) in ce...
Brain inflammation contributes to ischaemic and reperfusion injury, and thus worsens outcome after s...
Background: In intracerebral hemorrhage (ICH), a subtype of stroke, the bloodentry into the brain tr...
Our previous study demonstrated that the inhibition of interleukin-1Β (IL-1Β) reduces ischemic brain...