Status epilepticus (SE) is a neurologic emergency characterized by very prolonged, sometimes refractory seizures associated with a 23 percent mortality. SE is a progressive condition where seizures reduce GABA- medicated inhibition in the hippocampus which in turn leads to more seizures. Past and recent studies of patients and experimental animals having SE suggested the hypothesis that gamma-amino butyric acid type A (GABAA) receptor (GABAR) function is altered during SE. This proposal will directly test this hypothesis by using whole cell patch clamp to study the GABARs present on hippocampal neurons isolated from rats undergoing SE and by study of treatment of SE in rats. Experiments are proposed to accomplish following specific aims: 1) In whole animals the potency and efficacy of anticonvulsants acting at the benzodiazepine site and drugs acting at the barbiturate site of the GABARs will be measured after brief seizures and prolonged seizures of SE. 2) Compare the time course of loss of diazepam sensitivity of dentate granule cell GABARs during SE with the time course of loss of efficacy of diazepam in whole animals undergoing SE. 3) Compare the diazepam and pentobarbital sensitivity of CA1 pyramidal neurons acutely isolated from naive rats and rats undergoing 45 minutes of SE will be. 4) Characterize the detailed pharmacological properties of dentate granule cell GABARs following SE.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Scientist Development Award - Research (K02)
Project #
5K02NS002081-03
Application #
6187504
Study Section
NST-2 Subcommittee (NST)
Program Officer
Fureman, Brandy E
Project Start
1998-09-01
Project End
2003-08-31
Budget Start
2000-09-01
Budget End
2001-08-31
Support Year
3
Fiscal Year
2000
Total Cost
$127,845
Indirect Cost
Name
University of Virginia
Department
Neurology
Type
Schools of Medicine
DUNS #
001910777
City
Charlottesville
State
VA
Country
United States
Zip Code
22904
Mangan, Patrick S; Sun, Chengsan; Carpenter, Mackenzie et al. (2005) Cultured Hippocampal Pyramidal Neurons Express Two Kinds of GABAA Receptors. Mol Pharmacol 67:775-88
Mangan, Patrick S; Kapur, Jaideep (2004) Factors underlying bursting behavior in a network of cultured hippocampal neurons exposed to zero magnesium. J Neurophysiol 91:946-57
Yen, Weiwei; Williamson, John; Bertram, Edward H et al. (2004) A comparison of three NMDA receptor antagonists in the treatment of prolonged status epilepticus. Epilepsy Res 59:43-50
Williamson, John; Mtchedlishvili, Zakaria; Kapur, Jaideep (2004) Characterization of the convulsant action of pregnenolone sulfate. Neuropharmacology 46:856-64
Mtchedlishvili, Zakaria; Kapur, Jaideep (2003) A presynaptic action of the neurosteroid pregnenolone sulfate on GABAergic synaptic transmission. Mol Pharmacol 64:857-64
Mtchedlishvili, Z; Sun, C S; Harrison, M B et al. (2003) Increased neurosteroid sensitivity of hippocampal GABAA receptors during postnatal development. Neuroscience 118:655-66
Mtchedlishvili, Z; Bertram, E H; Kapur, J (2001) Diminished allopregnanolone enhancement of GABA(A) receptor currents in a rat model of chronic temporal lobe epilepsy. J Physiol 537:453-65
Borris, D J; Bertram, E H; Kapur, J (2000) Ketamine controls prolonged status epilepticus. Epilepsy Res 42:117-22
Kapur, J (1999) Status epilepticus in epileptogenesis. Curr Opin Neurol 12:191-5
Kapur, J; Haas, K F; Macdonald, R L (1999) Physiological properties of GABAA receptors from acutely dissociated rat dentate granule cells. J Neurophysiol 81:2464-71