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Interactions of MRZ 2/576 with Felbamate, Lamotrigine, Oxcarbazepine and Topiramate in the Mouse Maximal Electroshock-Induced Seizure Model

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This study focused on the evaluation of interactions between MRZ 2/576 (8-chloro-4-hydroxy-1-oxo-1,2-dihydropyridazino(4,5-b)quinoline-5-oxide choline salt), an <i>N</i>-methyl-<i>D</i>-aspartate (NMDA) receptor antagonist acting at the NMDA receptor/glycine<sub>B</sub> site and four newer antiepileptic drugs (felbamate, lamotrigine, oxcarbazepine, and topiramate) in the mouse maximal electroshock seizure model. Results indicate that MRZ 2/576 administered intraperitoneally, 5 min before the test, exerted a clear-cut anticonvulsant effect in the maximal electroshock seizure test in mice and its ED<sub>50</sub> value was 13.71 (11.95–15.73) mg/kg. In the subthreshold method, MRZ 2/576 (administered intraperitoneally, at a subthreshold dose of 5 mg/kg) significantly enhanced the anticonvulsant action of felbamate, oxcarbazepine and topiramate, by reducing their ED<sub>50</sub> values from 73.0 to 53.8 mg/kg (p < 0.05) for felbamate, from 10.77 to 7.48 mg/kg (p < 0.05) for oxcarbazepine, and from 49.3 to 28.7 mg/kg (p < 0.01) for topiramate. In contrast, MRZ 2/576 (5 mg/kg, i.p.) did not significantly affect the antiseizure effects of lamotrigine in the maximal electroshock seizure test in mice. Isobolographic transformation of data revealed that MRZ 2/576 (5 mg/kg, i.p.) exerted barely additive interactions with all investigated antiepileptic drugs in the maximal electroshock seizure test. In conclusion, the isobolographic analysis revealed that MRZ 2/576 additively cooperates with newer antiepileptic drugs in terms of suppression of maximal electroshock-induced seizures in mice.
Title: Interactions of MRZ 2/576 with Felbamate, Lamotrigine, Oxcarbazepine and Topiramate in the Mouse Maximal Electroshock-Induced Seizure Model
Description:
This study focused on the evaluation of interactions between MRZ 2/576 (8-chloro-4-hydroxy-1-oxo-1,2-dihydropyridazino(4,5-b)quinoline-5-oxide choline salt), an <i>N</i>-methyl-<i>D</i>-aspartate (NMDA) receptor antagonist acting at the NMDA receptor/glycine<sub>B</sub> site and four newer antiepileptic drugs (felbamate, lamotrigine, oxcarbazepine, and topiramate) in the mouse maximal electroshock seizure model.
Results indicate that MRZ 2/576 administered intraperitoneally, 5 min before the test, exerted a clear-cut anticonvulsant effect in the maximal electroshock seizure test in mice and its ED<sub>50</sub> value was 13.
71 (11.
95–15.
73) mg/kg.
In the subthreshold method, MRZ 2/576 (administered intraperitoneally, at a subthreshold dose of 5 mg/kg) significantly enhanced the anticonvulsant action of felbamate, oxcarbazepine and topiramate, by reducing their ED<sub>50</sub> values from 73.
0 to 53.
8 mg/kg (p < 0.
05) for felbamate, from 10.
77 to 7.
48 mg/kg (p < 0.
05) for oxcarbazepine, and from 49.
3 to 28.
7 mg/kg (p < 0.
01) for topiramate.
In contrast, MRZ 2/576 (5 mg/kg, i.
p.
) did not significantly affect the antiseizure effects of lamotrigine in the maximal electroshock seizure test in mice.
Isobolographic transformation of data revealed that MRZ 2/576 (5 mg/kg, i.
p.
) exerted barely additive interactions with all investigated antiepileptic drugs in the maximal electroshock seizure test.
In conclusion, the isobolographic analysis revealed that MRZ 2/576 additively cooperates with newer antiepileptic drugs in terms of suppression of maximal electroshock-induced seizures in mice.

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