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1.
Eur J Pharmacol ; 215(2-3): 237-44, 1992 May 14.
Article in English | MEDLINE | ID: mdl-1382998

ABSTRACT

We evaluated the inhibitory potencies at excitatory amino acid receptors of 2,3-dihydroxy-7-sulfamoyl-benzo[f]quinoxaline (BQX) and its 6-nitro derivative, NBQX. Currents activated by kainate or (RS)-alpha-amino-3-hydroxy-5-methyl-4-isoxazole-propionic acid (AMPA) in two-electrode voltage-clamp recordings of Xenopus oocytes injected with rat cortex mRNA were inhibited by BQX and NBQX: the apparent Ki values versus kainate were 14 microM and 78 nM, respectively, and versus AMPA were 23 microM and 63 nM, respectively. Thus, to a degree even more marked than with other quinoxalinedione derivatives, 6-nitro substitution of BQX to yield NBQX increases potency (200-fold) at the non-NMDA ionotropic receptor, but does not confer selectivity for kainate or AMPA. Schild analysis of the NBQX inhibition of the kainate and AMPA currents yielded pA2 values of 7.17 +/- 0.05 and 7.05 +/- 0.10, respectively, and slopes near unity confirming the competitive nature of the inhibition. Neither BQX nor NBQX significantly inhibited the current activated by glycine plus NMDA. The selectivity ratio of NBQX (greater than 5000-fold) is by far the greatest of any quinoxalinedione derivative antagonist of the kainate/AMPA receptor. BQX and NBQX also inhibited the excitatory postsynaptic field potentials mediated by kainate/AMPA receptors in the CA1 region of hippocampal slices after stimulation of the Schaffer collateral-commissural pathways with IC50 values of 130 and 0.90 microM, respectively. The 10-fold differences between the IC50 values in hippocampal slices and the Ki values in Xenopus oocytes correlate closely with data for other quinoxalinedione derivative antagonists.


Subject(s)
Ion Channels/drug effects , Quinoxalines/pharmacology , Receptors, Neurotransmitter/antagonists & inhibitors , Animals , Electrophysiology , Evoked Potentials/drug effects , Hippocampus/cytology , Hippocampus/drug effects , In Vitro Techniques , Neurons/drug effects , Nitro Compounds/pharmacology , Oocytes/drug effects , Oocytes/metabolism , Pyramidal Tracts/cytology , Pyramidal Tracts/drug effects , RNA, Messenger/pharmacology , Rats , Receptors, AMPA , Receptors, Amino Acid/drug effects , Receptors, Amino Acid/metabolism , Receptors, Kainic Acid , Synapses/drug effects , Xenopus
2.
Mol Pharmacol ; 41(2): 337-45, 1992 Feb.
Article in English | MEDLINE | ID: mdl-1371583

ABSTRACT

The inhibitory potencies at excitatory amino acid (EAA) receptors of 11 quinoxaline derivatives were evaluated in two-electrode voltage-clamp recordings of Xenopus oocytes injected with rat cortex mRNA. Currents activated by kainate or (RS)-alpha-amino-3-hydroxy-5-methyl-4-isoxazole-propionic acid (AMPA) in Xenopus oocytes were inhibited competitively by all the quinoxaline derivatives, with apparent Ki values ranging from 0.27 to 300 microM against kainate and from 0.25 to 137 microM against AMPA. An excellent correlation was observed between inhibitory potencies of the quinoxaline derivatives against kainate and AMPA currents, in support of the contention that in this preparation these two agonists act at a single site. All 11 quinoxaline derivatives also inhibited current activated by the combination of glycine and N-methyl-D-aspartate (NMDA), apparently acting at the glycine site, and did so over a narrower range of apparent Ki values (0.37-8.1 microM). The correlation between the quinoxalines' kainate/AMPA potencies and their glycine/NMDA potencies was relatively weak. Thus, the quinoxaline derivatives were all good antagonists of glycine/NMDA currents and displayed a greater range of potencies against kainate and AMPA. The inhibitory effects of the six quinoxaline derivatives most potent in the Xenopus oocyte experiments were also tested against the excitatory postsynaptic field potential (EPSFP) recorded in the pyramidal cell dendritic field of the CA1 region of hippocampal slices after stimulation of the Schaffer collateral-commissural pathways. In slices superfused with "normal" medium (containing 1 mM Mg2+), in which the EPSFP is mediated primarily by non-NMDA receptors, IC50 values correlated closely with the Ki values against kainate/AMPA obtained in oocyte experiments but were approximately 8-fold higher. Similarly, in slices superfused with nominally Mg(2+)-free medium, in which the EPSFP is amplified due to a relief of the Mg2+ block of NMDA receptors, IC50 values correlated closely with the Ki values against glycine/NMDA obtained in oocyte experiments but were 60-fold higher. This comparison of results from the two experimental systems lends further support to the argument that hippocampal synaptic transmission is mediated postsynaptically by kainate/AMPA-type and NMDA/glycine-type EAA receptors that are pharmacologically indistinguishable from those expressed in mRNA-injected Xenopus oocytes. Furthermore, it suggests that EAA receptors in situ may be nearly saturated by high local concentrations of the endogenous ligands, a condition that would contribute substantially to the apparent non-NMDA receptor selectivity of certain quinoxaline derivatives.


Subject(s)
Quinoxalines/pharmacology , Receptors, Cell Surface/antagonists & inhibitors , Receptors, N-Methyl-D-Aspartate/antagonists & inhibitors , Synapses/drug effects , Animals , Cells, Cultured , Cerebral Cortex/physiology , Electrophysiology , Evoked Potentials/drug effects , Female , Glycine/pharmacology , Hippocampus/anatomy & histology , Hippocampus/drug effects , Hippocampus/physiology , Ibotenic Acid/analogs & derivatives , Ibotenic Acid/antagonists & inhibitors , Ibotenic Acid/pharmacology , Kainic Acid/antagonists & inhibitors , Kainic Acid/pharmacology , Male , Membrane Potentials/drug effects , N-Methylaspartate/antagonists & inhibitors , N-Methylaspartate/pharmacology , Oocytes/drug effects , Oocytes/physiology , Oocytes/ultrastructure , RNA, Messenger/genetics , Rats , Rats, Inbred Strains , Receptors, Amino Acid , Receptors, Cell Surface/genetics , Structure-Activity Relationship , Synapses/physiology , Synapses/ultrastructure , Xenopus , alpha-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid
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