LE WE PMID CA
Epilepsy (Excitotoxicity)858Epilepsie (Excitotoxicity)

AM251 ttCB1

AM404

Amyotrophic lateral sclerosis

Apoptosis

Brain injury

Calcium (Endoplasmic reticulum)

Caspase12

Chaperone

CNS (Astrocyte)

CREB

delta 9 tetraydrocannabinol

Epilepsy (Excitotoxicity)

ERS UFR (Apoptosis)

ERS UFR (Diseases)

ERS UFR (Toxikologie)

Glutamate glutamine cycle

Ischemia reperfusion

Kainic Acid

Nervous system (Neurodegeneration)

Neuroprotective agents

Nitric oxide NO

Nitrosative stress

PARP

Peroxynitrite

Protein (ptm S nitrosylation)

Receptor (Cannabinoid)

Receptor (Glutamate metabotropic)

Receptor (Inositol trisphosphate)

Receptor (Kainate)

Receptor (Ryanodine)

Redox (BASKET)

Threohydroxyaspartate

2001  
1
Neuroprotection of striatal neurons against kainate excitotoxicity by neurotrophins and GDNF family members.
[11579137] J Neurochem 78(6): 1287-96 (2001)
2001  
2
Cellular defenses against excitotoxic insults.
[11259476] J Neurochem 76(6): 1601-11 (2001)
2002  
3
Oxidative and nonoxidative metabolism of excited neurons and astrocytes.
[11807388] J Cereb Blood Flow Metab 22(1): 1-14 (2002)
1999  
4
Excitotoxins in neuronal apoptosis and necrosis.
[10366188] J Cereb Blood Flow Metab 19(6): 583-91 (1999)
2005  
5
Role of astrocytes in glutamate homeostasis: implications for excitotoxicity.
[16371316] Neurotox Res 8(3-4): 221-5 (2005)
2005  
6
The role of group I metabotropic glutamate receptors in neuronal excitotoxicity in Alzheimer's disease.
[15639804] Neurotox Res 7(1-2): 125-41 (2005)
2002  
7
Excitotoxicity: perspectives based on N-methyl-D-aspartate receptor subtypes.
[11861773] J Pharmacol Exp Ther 300(3): 717-23 (2002)
2009  
8
Molecular mechanisms of excitotoxicity and their relevance to pathogenesis of neurodegenerative diseases.
[19343058] Acta Pharmacol Sin 30(4): 379-87 (2009)
2001  
9
Glutamate neurotoxicity, oxidative stress and mitochondria.
[11376653] FEBS Lett 497(1): 1-5 (2001)
2005  
10
The role of excitotoxicity in neurodegeneration.
[16416396] Folia Neuropathol 43(4): 322-39 (2005)
2002  
11
Ontogeny of the N-methyl-D-aspartate (NMDA) receptor system and susceptibility to neurotoxicity.
[12075105] Toxicol Sci 68(1): 9-17 (2002)
2010  
12
Mitochondrial dysfunction and oxidative stress in seizure-induced neuronal cell death.
[20711885] Acta Neurol Taiwan 19(1): 3-15 (2010)
2011  
13
Kainic acid-induced neurodegenerative model: potentials and limitations.
[21127706] J Biomed Biotechnol 2011(-): 457079 (2011)
2010  
14
Ultrastructural and transcriptional profiling of neuropathological misregulation of CREB function.
[20395962] Cell Death Differ 17(10): 1636-44 (2010)
2007  
15
S-Nitrosylation and uncompetitive/fast off-rate (UFO) drug therapy in neurodegenerative disorders of protein misfolding.
[17431424] Cell Death Differ 14(7): 1305-14 (2007)
2009  
16
Drug targets for traumatic brain injury from poly(ADP-ribose)polymerase pathway modulation.
[19371326] Br J Pharmacol 157(5): 695-704 (2009)
2007  
17
Oxidative and endoplasmic reticulum stress interplay in sporadic amyotrophic lateral sclerosis.
[17716997] Brain 130(Pt 12): 3111-23 (2007)
2010  
18
Intracellular Ca2+ release through ryanodine receptors contributes to AMPA receptor-mediated mitochondrial dysfunction and ER stress in oligodendrocytes.
[21364659] Cell Death Dis 1(): e54 (2010)
2007  
19
Cellular interplay between neurons and glia: toward a comprehensive mechanism for excitotoxic neuronal loss in neurodegeneration.
[19122795] Cellscience 4(1): 111-146 (2007)
2011  
20
Kainic Acid-induced neurotoxicity: targeting glial responses and glia-derived cytokines.
[22131947] Curr Neuropharmacol 9(2): 388-98 (2011)
2007  
21
Delta9-tetrahydrocannabinol (THC) and AM 404 protect against cerebral ischaemia in gerbils through a mechanism involving cannabinoid and opioid receptors.
[17965746] Br J Pharmacol 152(8): 1301-11 (2007)

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