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Published on: May 16, 2019
Age and activation determines the anticonvulsant effect of ifenprodil in rats
1Department of Developmental Epileptology, Institute of Physiology, Academy of Sciences of the Czech Republic, Videnska 1083, 14220, Prague 4, Czech Republic, maresp@biomed.cas.cz.
Insights
Ifenprodil showed anticonvulsant effects in young rats, but this action was age- and activation-dependent. In older rats, ifenprodil acted as a proconvulsant, highlighting developmental changes in NMDA receptor function.
Area of Science:
- Neuroscience
- Pharmacology
- Developmental Biology
Background:
- The NR2B subunit of NMDA receptors is predominant in early development.
- Ifenprodil, an NR2B-selective NMDA receptor antagonist, was hypothesized to have anticonvulsant properties in developing rats.
Purpose of the Study:
- To investigate the age-dependent effects of ifenprodil on cortical epileptic afterdischarges (ADs) in rat pups.
- To determine if ifenprodil's action is influenced by the presence of existing ADs.
Main Methods:
- Cortical ADs were induced and measured in 12-, 15-, 18-, and 25-day-old rats.
- Ifenprodil was administered either as a pretreatment or after ADs were established.
- Threshold current intensities and AD duration were analyzed.
Main Results:
- Pretreatment with ifenprodil showed anticonvulsant effects only in 15-day-old rats.
- In 18- and 25-day-old rats, ifenprodil exhibited proconvulsant effects, lowering thresholds and increasing AD duration.
- When administered after ADs onset, ifenprodil shortened ADs in 12-, 15-, and 18-day-old rats, but not in 25-day-old rats.
Conclusions:
- Ifenprodil's anticonvulsant action is significantly age-dependent.
- The effect of ifenprodil is also dependent on the activation state of the NMDA receptors.
- Developmental changes in NR2B-containing NMDA receptors influence drug efficacy and action.
Abstract:
Ifenprodil, an antagonist of NMDA receptors containing the NR2B subunit, was expected to exhibit anticonvulsant action in rat pups up to the third postnatal week because of predominance of NR2B subunit at early development. Cortical epileptic afterdischarges (ADs) were used to study possible effects on threshold current intensities and duration of ADs in 12-, 15-, 18-, and 25-day-old rats. A series of 18 stimulation series with stepwise increasing current intensities (from 0.2 to 15 mA) was applied with 10-min intervals. The first experiment studied rats pretreated with ifenprodil (20 or 40 mg/kg), the second experiment studied an effect of ifenprodil on already present ADs-the dose of 20 mg/kg was administered after stimulation with the 3.5-mA current intensity. Pretreatment with ifenprodil resulted in an anticonvulsant effect in 15-day-old rats only, on the contrary, proconvulsant action was found in 18- and 25-day-old animals (decrease of thresholds especially for transition into the second, limbic type of ADs and increase in duration of ADs). Anticonvulsant effect was found in 12-, 15-, and 18-day-old rats in the second experiment-ADs were shortened. In contrast, no effect was observed in 25-day-old animals. An anticonvulsant action of ifenprodil is not only age-dependent but also activation-dependent.
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