The transfer of tolerance between drugs may indicate a common mode of action. The development of cross-tolerance to the anticonvulsant effect of felbamate after long-term treatment of mice with diazepam, a positive modulator of ?-aminobutyric acid (GABA)-mediated transmission, was therefore studied in order to clarify the mechanism of this action of felbamate. A challenge injection of felbamate, administered 36 h after the last dose of chronic diazepam treatment, antagonized convulsions elicited by administration of isoniazid. In contrast, felbamate had no effect on the isoniazid-induced increase in t-[35S]butylbicyclophosphorothionate binding to cerebral cortical membranes of diazepam-tolerant mice. These results suggest that the action of felbamate on GABAergic transmission is not required for the anticonvulsant effect of this drug. This conclusion is consistent with studies that have indicated that the antiepileptic activity of felbamate depends on its modulatory activity at excitatory amino acid receptors.

Antagonism of convulsions but failure to enhance GABA(A) receptor function by felbamate in mice tolerant to diazepam

Pisu;M G;
1997

Abstract

The transfer of tolerance between drugs may indicate a common mode of action. The development of cross-tolerance to the anticonvulsant effect of felbamate after long-term treatment of mice with diazepam, a positive modulator of ?-aminobutyric acid (GABA)-mediated transmission, was therefore studied in order to clarify the mechanism of this action of felbamate. A challenge injection of felbamate, administered 36 h after the last dose of chronic diazepam treatment, antagonized convulsions elicited by administration of isoniazid. In contrast, felbamate had no effect on the isoniazid-induced increase in t-[35S]butylbicyclophosphorothionate binding to cerebral cortical membranes of diazepam-tolerant mice. These results suggest that the action of felbamate on GABAergic transmission is not required for the anticonvulsant effect of this drug. This conclusion is consistent with studies that have indicated that the antiepileptic activity of felbamate depends on its modulatory activity at excitatory amino acid receptors.
1997
4 aminobutyric acid a receptor
diazepam
felbamate
isoniazid
animal experiment
animal model
anticonvulsant activity
article
controlled study
convulsion
drug cross tolerance
drug effect
drug tolerance
gabaergic transmission
intraperitoneal drug administration
male
nonhuman
priority journal
rat
Animals
Anticonvulsants
Diazepam
Down-Regulation
Drug Evaluation
Preclinical
Drug Tolerance
Excitatory Amino Acid Antagonists
GABA Modulators
Isoniazid
Kynurenic Acid
Male
Mice
Propylene Glycols
Rats
Rats
Sprague-Dawley
Receptors
GABA-A
Time Factors
Animalia
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/198153
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