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nicotinamide/seizures

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[Effect of nicotinamide on generalized convulsions in mice].

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It was shown in acute experiments on mice that nicotinamide in doses of 250-500 mg/kg given intraperitoneally increased the latent period of corasole clonico-tonic convulsions without affecting their expressiveness and mortality. When given in a dose of 1000 mg/kg nicotinamide prevented

[Effect of pantogam, nicotinamide, and phenazepam on seizure activity].

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Effects of different doses of nicotinamide, pantogam, pnenazepam, and their combined actions on generalized seizures induced by pentylenetetrazole (60-100 mg/kg) were studied in acute experiments on mice. It was shown that pantogam (500 mg/kg) doubled the latent period of seizures, considerably
In adult male albino BALB/c mice inosine (INS, 100 and 200 micrograms, intraventricularly) prolonged the latency of pentylenetetrazol (PTZ) seizures while nicotinamide (NAM) exerted an opposite effect. In adult male C57BL/6 mice INS decreased lethality after PTZ while NAM increased it. In adult male

[Effect of delta sleep-inducing peptide, anticonvulsant preparations and nicotinamide on generalized seizure activity].

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The influence of delta-sleep inducing peptide (DSIP) upon seizures induced by corazol, bicuculline, picrotoxin, strychnine, thiosemicarbazide were investigated in experiments on F1(CBA X C57 BL/6) mice. It was shown that DSIP increased the latency of first seizure manifestation which were induced by
Changes in neuropeptide Y (NPY) and nicotinamide adenine dinucleotide phosphate-diaphorase (NADPH-d)-positive neurons in the hippocampus were investigated 5, 10 and 20 days after kainic acid (KA) administration using a double labeling method. The numbers of NADPH-d-positive-only and
Despite decades of epilepsy research, 30% of focal epilepsies remain resistant to antiseizure drugs, with effective drug development impeded by lack of understanding on how seizures are initiated. Here, we report the mechanism of seizure onset relevant to most seizures that are
Nicotinamide (NAM, 1000 mg/kg), inosine (INS, 1000 mg/kg), hypoxanthine (HXT, 500 mg/kg), putative endogenous ligands of the benzodiazepine receptor, and nicotinic acid (NA, 500 mg/kg) diminished DL-kynurenine-(DL-K, 50 micrograms ICV) induced seizures in C57BL/6 adult male mice and only prolonged

[Nicotinamide in experimental asthmatic seizure].

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Effect of nicotinamide on theophylline seizures in rats.

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Protective effect of adenosine and nicotinamide against audiogenic seizure.

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We herein investigated the histopathological features, including proliferative activity and immunoexpression, of pancreatic islet cell tumors (ICTs) in male SD rats induced by streptozotocin (STZ) and nicotinamide (NA), and discussed their relevance to biological behaviors and prognoses. A total of

[Effect of nicotinamide on focal and generalized epileptic activity in the cerebral cortex].

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Intraperitoneal injection of nicotinamide to rats inhibits epileptic activity induced by penicillin application in the animals' brain cortex. It has been found in experimental primary-generalized epileptic activity induced by bemegride that preliminary injection of nicotinamide increased the latency
Eight 2-arylimino-3-(3-N-morpholinopropyl) thiazolid-4-ones were synthesized from the corresponding 1-aryl-3-(3-N-morpholinopropyl) thiocarbamides, characterized, and tested for their effects on the cellular respiratory activity of rat brain homogenates. All substituted 4-thiazolidones selectively

Nitric oxide production is decreased in the brain of the seizure susceptible EL mouse.

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To investigate nitric oxide production in the brain of the EL mouse, an inbred mutant strain of the ddY mouse that is susceptible to convulsive seizures, we measured whole brain nitric oxide metabolites, and counted the number of nitric oxide-producing cells in the parietal cortex and striatum.

The calculation of the cytoplasmic free [NADP+]/[NADPH] ratio in brain: effect of electroconvulsive seizure.

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This study has investigated the feasibility of calculating the cytoplasmic free [NADP+]/[NADPH] ratio in rat brain. The time course of the change in the substrate ratios of the malate dehydrogenase (decarboxylating) [E.C. 1.1.1.40], NADP+-isocitrate dehydrogenase (decarboxylating) [E.C. 1.1.1.42]
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