| Literature DB >> 18830436 |
Abstract
Experiments using male CD1 mice were carried out to investigate the effects of subchronic (daily administration for 8 days) pretreatments with drugs enhancing GABAergic transmission (diazepam, 10 mg/kg, ip; gabapentin, 100 mg/kg, po; or vigabatrin, 500 mg/kg, po) on pentylenetetrazol (PTZ)-induced seizures, 24 h after the last injection. Subchronic administration of diazepam reduced latencies to clonus, tonic extension and death induced by PTZ. Subchronic vigabatrin produced enhanced latency to the first clonus but faster occurrence of tonic extension and death induced by PTZ. Subchronic gabapentin did not modify PTZ-induced seizures. Autoradiography experiments revealed reduced benzodiazepine receptor binding in several brain areas after subchronic treatment with diazepam or gabapentin, whereas subchronic vigabatrin did not induce significant receptor changes. The present results indicate differential effects induced by the subchronic administration of diazepam, vigabatrin, and gabapentin on the susceptibility to PTZ-induced seizures, benzodiazepine receptor binding, or both.Entities:
Keywords: benzodiazepine receptors; diazepam; gabapentin; pentylenetetrazol; vigabatrin
Year: 2008 PMID: 18830436 PMCID: PMC2526378 DOI: 10.2147/ndt.s2118
Source DB: PubMed Journal: Neuropsychiatr Dis Treat ISSN: 1176-6328 Impact factor: 2.570
Figure 1Effects of subchronic administration with diazepam (upper panel), vigabatrin (medium panel) and gabapentin (lower panel) on PTZ-induced convulsions. Results show the latency in seconds from the injection of PTZ (90 mg/kg ip) to first clonus, tonic extension and death.
Note: *p < 0.05 when compared with control group.
[3H]Flunitrazepam binding (fmol/mg of protein) in brain areas of mice treated with subchronic administration of saline and diazepam (10 mg/kg ip)
| Brain area | Saline | Diazepam |
|---|---|---|
| Motor cortex | 524.7 ± 27.5 | 382.6 ± 61.0 |
| Sensorimotor cortex | 503.4 ± 35.2 | 367.6 ± 62.4 |
| Cingulate cortex | 542.1 ± 30.1 | 334.4 ± 50.0 |
| Caudate putamen | 199.2 ± 40.0 | 143.7 ± 8.4 |
| Nucleus accumbens | 253.8 ± 38.1 | 210.9 ± 34.9 |
| CA1–CA3 fields | 435.7 ± 57.1 | 286.1 ± 47.7 |
| Dentate gyrus | 564.3 ± 62.1 | 378.5 ± 69.4 |
| Medial amygdala | 552.7 ± 50.2 | 322.8 ± 56.6 |
| Basolateral amygdala | 466.3 ± 60.6 | 276.3 ± 56.8 |
| Thalamus | 290.6 ± 37.7 | 206.8 ± 34.7 |
| Hypothalamus | 431.5 ± 53.4 | 280.3 ± 57.3 |
Notes: Each value represents the mean ± standard error;
p < 0.05 compared with the saline group.
[3H]Flunitrazepam binding (fmol/mg of protein) in brain areas of mice treated with subchronic administration of saline and gabapentin (100 mg/kg po)
| Motor cortex | 505.5 ± 23.2 | 401.8 ± 30.4 |
| Sensorimotor cortex | 503.1 ± 29.4 | 329.1 ± 37.7 |
| Cingulate cortex | 501.5 ± 53.2 | 397.2 ± 33.0 |
| Caudate putamen | 190.4 ± 21.3 | 173.9 ± 28.4 |
| Nucleus accumbens | 296.5 ± 28.3 | 218.9 ± 27.9 |
| CA1–CA3 fields | 480.7 ± 12.8 | 315.3 ± 33.5 |
| Dentate gyrus | 535.7 ± 18.4 | 417.7 ± 29.8 |
| Medial amygdala | 463.9 ± 50.7 | 338.0 ± 40.7 |
| Basolateral amygdala | 458.8 ± 15.7 | 306.3 ± 32.67 |
| Thalamus | 315.5 ± 55.2 | 172.6 ± 32.3 |
| Hypothalamus | 389.1 ± 56.3 | 238.9 ± 49.6 |
Notes: Each value represents the mean ± standard error;
p < 0.05 compared with the saline group.
[3H]Flunitrazepam binding (fmol/mg of protein) in brain areas of mice treated with subchronic administration of saline and vigabatrin (500 mg/kg po)
| Motor cortex | 439.7 ± 52.4 | 398.9 ± 33.8 |
| Sensorimotor cortex | 360.3 ± 50.6 | 368.9 ± 38.3 |
| Cingulate cortex | 408.5 ± 51.5 | 386.6 ± 33.6 |
| Caudate putamen | 180.4 ± 21.9 | 147.4 ± 13.6 |
| Nucleus accumbens | 190.7 ± 26.6 | 168.6 ± 14.6 |
| CA1–CA3 fields | 292.1 ± 38.7 | 272.6 ± 23.0 |
| Dentate gyrus | 365.8 ± 43.2 | 351.5 ± 30.8 |
| Medial amygdala | 354.5 ± 46.2 | 379.8 ± 31.8 |
| Basolateral amygdala | 288.5 ± 29.4 | 295.1 ± 34.0 |
| Thalamus | 245.1 ± 31.5 | 277.8 ± 26.9 |
| Hypothalamus | 296.9 ± 36.4 | 292.6 ± 24.7 |
Notes: Each value represents the mean ± standard error.