Glutamate transporter proteins are essential for the control of interstitial glutamate levels, with an impairment of their function or levels being a major potential contributor to excitotoxicity. We have investigated the effects of lateral fluid percussion on the levels of the glutamate transporter proteins GLT-1α, its splice variant GLT-1v, GLAST, and EAAC1 in the rat in order to evaluate their pathogenetic role in this model of traumatic brain injury (TBI). Immunoblot analysis revealed neuronal loss in the cerebral cortex was accompanied by a 54% decrease in GLT-1v 6 h following the insult which progressed to an 83% loss of the transporter after 24 h. No changes in GLT-1α, GLAST, or EAAC1 were observed in this brain region at either time...
Traumatic brain injury results in an increased brain energy demand that is associated with profound ...
The high-affinity glutamate transporter GLT-1 plays a key role in the control of the glutamate homeo...
The homeostasis of glutamate is critical to normal brain function; deficiencies in the regulation of...
Traumatic brain injury is followed by increased extracellular glutamate concentration. Uptake of glu...
We hypothesize that the primary mechanism for removal of glutamate from the extracellular space is a...
Traumatic brain injury (TBI) in humans and in animals leads to an acute and sustained increase in ti...
The GLT-1 and GLAST astroglial transporters are the glutamate transporters mainly involved in mainta...
Following the onset of an ischemic brain injury, the excitatory neurotransmitter glutamate is releas...
Dysfunction of glutamate transporters has been proposed to promote neuronal death in modelled cerebr...
It has been suggested that reduced astrocytic uptake of neuronally released glutamate contributes to...
Dysregulation of the astroglial glutamate transporters GLAST and GLT-1 has been implicated in severa...
The neurotransmitter glutamate is inactivated by cellular uptake; mostly catalyzed by the glutamate ...
Dysregulation of the astroglial glutamate transporters GLAST and GLT-1 has been implicated in severa...
The aim of the present study was to investigate microglia activation over time following traumatic b...
The aim of the present study was to investigate microglia activation over time following traumatic b...
Traumatic brain injury results in an increased brain energy demand that is associated with profound ...
The high-affinity glutamate transporter GLT-1 plays a key role in the control of the glutamate homeo...
The homeostasis of glutamate is critical to normal brain function; deficiencies in the regulation of...
Traumatic brain injury is followed by increased extracellular glutamate concentration. Uptake of glu...
We hypothesize that the primary mechanism for removal of glutamate from the extracellular space is a...
Traumatic brain injury (TBI) in humans and in animals leads to an acute and sustained increase in ti...
The GLT-1 and GLAST astroglial transporters are the glutamate transporters mainly involved in mainta...
Following the onset of an ischemic brain injury, the excitatory neurotransmitter glutamate is releas...
Dysfunction of glutamate transporters has been proposed to promote neuronal death in modelled cerebr...
It has been suggested that reduced astrocytic uptake of neuronally released glutamate contributes to...
Dysregulation of the astroglial glutamate transporters GLAST and GLT-1 has been implicated in severa...
The neurotransmitter glutamate is inactivated by cellular uptake; mostly catalyzed by the glutamate ...
Dysregulation of the astroglial glutamate transporters GLAST and GLT-1 has been implicated in severa...
The aim of the present study was to investigate microglia activation over time following traumatic b...
The aim of the present study was to investigate microglia activation over time following traumatic b...
Traumatic brain injury results in an increased brain energy demand that is associated with profound ...
The high-affinity glutamate transporter GLT-1 plays a key role in the control of the glutamate homeo...
The homeostasis of glutamate is critical to normal brain function; deficiencies in the regulation of...