-
Neurological dysfunctions in mice expressing different levels of the Q/R site-unedited AMPAR subunit GluR-B.
Nat Neurosci. 1999 Jan;2(1):57-64
PMID: 10195181
-
Inward rectification of both AMPA and kainate subtype glutamate receptors generated by polyamine-mediated ion channel block.
Neuron. 1995 Aug;15(2):453-62
PMID: 7646897
-
Neuroprotection after several days of mild, drug-induced hypothermia.
J Cereb Blood Flow Metab. 1996 May;16(3):474-80
PMID: 8621752
-
Antisense oligonucleotides: towards clinical trials.
Trends Biotechnol. 1996 Oct;14(10):376-87
PMID: 8987636
-
Minireview. Kainic acid as a tool for the study of temporal lobe epilepsy.
Life Sci. 1981 Nov 16;29(20):2031-42
PMID: 7031398
-
Vulnerability of mossy fiber targets in the rat hippocampus to forebrain ischemia.
J Neurosci. 1993 Sep;13(9):3964-79
PMID: 8366355
-
Ca2+ ionophore-induced apoptosis on cultured embryonic rat cortical neurons.
Brain Res. 1994 Jul 25;652(1):65-70
PMID: 7525020
-
Induction of caspase-3-like protease may mediate delayed neuronal death in the hippocampus after transient cerebral ischemia.
J Neurosci. 1998 Jul 1;18(13):4914-28
PMID: 9634557
-
Enhanced LTP in mice deficient in the AMPA receptor GluR2.
Neuron. 1996 Nov;17(5):945-56
PMID: 8938126
-
Synaptic distribution of the AMPA-GluR2 subunit and its colocalization with calcium-binding proteins in rat cerebral cortex: an immunohistochemical study using a GluR2-specific monoclonal antibody.
Exp Neurol. 1996 Dec;142(2):296-312
PMID: 8934561
-
Effects of a spider toxin and its analogue on glutamate-activated currents in the hippocampal CA1 neuron after ischemia.
J Neurophysiol. 1995 Jul;74(1):218-25
PMID: 7472325
-
Histochemical study of Ca(2+)-ATPase activity in ischemic CA1 pyramidal neurons in the gerbil hippocampus.
Acta Neuropathol. 1995;90(5):448-53
PMID: 8560976
-
Oligodeoxynucleoside phosphorothioate stability in subcellular extracts, culture media, sera and cerebrospinal fluid.
J Biochem Biophys Methods. 1990 Mar;20(3):259-67
PMID: 2188993
-
The GluR2 (GluR-B) hypothesis: Ca(2+)-permeable AMPA receptors in neurological disorders.
Trends Neurosci. 1997 Oct;20(10):464-70
PMID: 9347614
-
Ion homeostasis in rat brain in vivo: intra- and extracellular [Ca2+] and [H+] in the hippocampus during recovery from short-term, transient ischemia.
J Cereb Blood Flow Metab. 1992 Sep;12(5):759-72
PMID: 1324251
-
Developmental regulation of glutamate and GABA(A) receptor gene expression in rat hippocampus following kainate-induced status epilepticus.
Dev Neurosci. 1997;19(6):529-42
PMID: 9445090
-
Selective vulnerability of the hippocampus in brain ischemia.
Neuroscience. 1991;40(3):599-636
PMID: 1676492
-
Divalent ion permeability of AMPA receptor channels is dominated by the edited form of a single subunit.
Neuron. 1992 Jan;8(1):189-98
PMID: 1370372
-
Kainate-induced status epilepticus alters glutamate and GABAA receptor gene expression in adult rat hippocampus: an in situ hybridization study.
J Neurosci. 1994 May;14(5 Pt 1):2697-707
PMID: 8182436
-
Are Ca(2+)-permeable kainate/AMPA receptors more abundant in immature brain?
Neurosci Lett. 1992 Sep 14;144(1-2):65-9
PMID: 1331916
-
The GluR2 hypothesis: Ca(++)-permeable AMPA receptors in delayed neurodegeneration.
Cold Spring Harb Symp Quant Biol. 1996;61:373-84
PMID: 9246466
-
Glutamate receptor anchoring proteins and the molecular organization of excitatory synapses.
Ann N Y Acad Sci. 1999 Apr 30;868:483-93
PMID: 10414325
-
Time course of inhibition of hypertension by antisense oligonucleotides targeted to AT1 angiotensin receptor mRNA in spontaneously hypertensive rats.
Am J Hypertens. 1997 May;10(5 Pt 2):56S-62S
PMID: 9160782
-
Limbic seizure and brain damage produced by kainic acid: mechanisms and relevance to human temporal lobe epilepsy.
Neuroscience. 1985 Feb;14(2):375-403
PMID: 2859548
-
Early-onset epilepsy and postnatal lethality associated with an editing-deficient GluR-B allele in mice.
Science. 1995 Dec 8;270(5242):1677-80
PMID: 7502080
-
Antagonism of the NMDA and non-NMDA receptors in global versus focal brain ischemia.
Prog Brain Res. 1993;96:125-35
PMID: 8392737
-
Global ischemia induces downregulation of Glur2 mRNA and increases AMPA receptor-mediated Ca2+ influx in hippocampal CA1 neurons of gerbil.
J Neurosci. 1997 Aug 15;17(16):6179-88
PMID: 9236229
-
Temporal profile of neuronal damage in a model of transient forebrain ischemia.
Ann Neurol. 1982 May;11(5):491-8
PMID: 7103425
-
AMPA, but not NMDA, receptor antagonism is neuroprotective in gerbil global ischaemia, even when delayed 24 h.
Eur J Pharmacol. 1993 Jun 4;236(3):347-53
PMID: 7689464
-
The role of zinc in selective neuronal death after transient global cerebral ischemia.
Science. 1996 May 17;272(5264):1013-6
PMID: 8638123
-
Ca2+ permeability of KA-AMPA--gated glutamate receptor channels depends on subunit composition.
Science. 1991 May 10;252(5007):851-3
PMID: 1709304
-
Interaction of the N-ethylmaleimide-sensitive factor with AMPA receptors.
Neuron. 1998 Aug;21(2):393-400
PMID: 9728920
-
Differences in Ca2+ permeability of AMPA-type glutamate receptor channels in neocortical neurons caused by differential GluR-B subunit expression.
Neuron. 1994 Jun;12(6):1281-9
PMID: 8011338
-
Expression of zinc transporter gene, ZnT-1, is induced after transient forebrain ischemia in the gerbil.
J Neurosci. 1997 Sep 1;17(17):6678-84
PMID: 9254680
-
Relative abundance of subunit mRNAs determines gating and Ca2+ permeability of AMPA receptors in principal neurons and interneurons in rat CNS.
Neuron. 1995 Jul;15(1):193-204
PMID: 7619522
-
Switch in glutamate receptor subunit gene expression in CA1 subfield of hippocampus following global ischemia in rats.
Proc Natl Acad Sci U S A. 1992 Nov 1;89(21):10499-503
PMID: 1438239
-
Relationship of neuronal vulnerability and calcium binding protein immunoreactivity in ischemia.
Exp Brain Res. 1990;83(1):55-66
PMID: 2073950
-
Differential dependence on GluR2 expression of three characteristic features of AMPA receptors.
J Neurosci. 1997 Dec 15;17(24):9393-406
PMID: 9390995
-
Structural determinants of ion flow through recombinant glutamate receptor channels.
Science. 1991 Jun 21;252(5013):1715-8
PMID: 1710829
-
Antisense oligodeoxynucleotide inhibits D2 dopamine receptor-mediated behavior and D2 messenger RNA.
Neuroscience. 1993 Aug;55(3):607-12
PMID: 8413923
-
Delayed neuronal death in the gerbil hippocampus following ischemia.
Brain Res. 1982 May 6;239(1):57-69
PMID: 7093691
-
Antisense oligonucleotide strategies in neuropharmacology.
Trends Pharmacol Sci. 1994 Feb;15(2):42-6
PMID: 8165722
-
Distribution of phosphodiester and phosphorothioate oligonucleotides in rat brain after intraventricular and intrahippocampal administration determined by in situ hybridization.
Regul Pept. 1995 Oct 20;59(2):193-9
PMID: 8584754
-
Calcium: still center-stage in hypoxic-ischemic neuronal death.
Trends Neurosci. 1995 Feb;18(2):58-60
PMID: 7537408
-
Blocking effect of 1-naphthyl acetyl spermine on Ca(2+)-permeable AMPA receptors in cultured rat hippocampal neurons.
Neurosci Res. 1997 Sep;29(1):27-36
PMID: 9293490
-
Immunochemical characterization of the non-NMDA glutamate receptor using subunit-specific antibodies. Evidence for a hetero-oligomeric structure in rat brain.
J Biol Chem. 1992 Jan 5;267(1):501-7
PMID: 1309749
-
Subunit composition at the single-cell level explains functional properties of a glutamate-gated channel.
Neuron. 1994 Feb;12(2):383-8
PMID: 7509161
-
Antisense oligodeoxynucleotides to NMDA-R1 receptor channel protect cortical neurons from excitotoxicity and reduce focal ischaemic infarctions.
Nature. 1993 May 20;363(6426):260-3
PMID: 8487863
-
Antisense strategies in neurobiology.
Neurochem Int. 1997 Sep;31(3):321-48
PMID: 9246677
-
Electron microscopic evidence against apoptosis as the mechanism of neuronal death in global ischemia.
J Neurosci. 1999 Jun 1;19(11):4200-10
PMID: 10341224
-
Essential role of adenosine, adenosine A1 receptors, and ATP-sensitive K+ channels in cerebral ischemic preconditioning.
Proc Natl Acad Sci U S A. 1995 May 9;92(10):4666-70
PMID: 7753861
-
Ca(2+)-dependent non-NMDA receptor-mediated synaptic currents in ischemic CA1 hippocampal neurons.
J Neurophysiol. 1994 Mar;71(3):1190-6
PMID: 8201412