Literature DB >> 2884925

Somatostatin augments the spread of limbic seizures from the hippocampus.

J B Perlin, E W Lothman, W A Geary.   

Abstract

The role of the neuropeptide somatostatin in limbic seizures was studied using electrical stimulation of the hippocampus in kindled rats. Cysteamine, an agent which selectively and reversibly depletes brain somatostatin stores, had a biphasic action. An early proconvulsant effect was seen within a few hours, consisting of prolonged electrographic seizures in the hippocampus and more severe behavioral convulsions. A later anticonvulsant effect, maximal at 1 to 2 days and dissipating within a week, was manifested by less intense behavioral convulsions without change in the duration of electrical seizure activity. Both effects were dose-dependent. No change in afterdischarge thresholds was detected at any time after the administration of cysteamine. Intraventricular administration of somatostatin to animals with behavioral seizures attenuated by cysteamine treatment restored the responses to precysteamine levels. We conclude that somatostatin facilitates the spread of seizures over limbic circuits from a region of focal seizure initiation.

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Year:  1987        PMID: 2884925     DOI: 10.1002/ana.410210511

Source DB:  PubMed          Journal:  Ann Neurol        ISSN: 0364-5134            Impact factor:   10.422


  3 in total

1.  Further studies of the effects of somatostatin and related peptides in area CA1 of rabbit hippocampus.

Authors:  H E Scharfman; P A Schwartzkroin
Journal:  Cell Mol Neurobiol       Date:  1988-12       Impact factor: 5.046

2.  Differential increases in brain levels of neuropeptide Y and vasoactive intestinal polypeptide after kainic acid-induced seizures in the rat.

Authors:  J Marksteiner; G Sperk; D Maas
Journal:  Naunyn Schmiedebergs Arch Pharmacol       Date:  1989 Jan-Feb       Impact factor: 3.000

3.  Repeated electroconvulsive shocks cause transient changes in rat hippocampal somatostatin and neuropeptide Y immunoreactivity and mRNA in situ hybridization signals.

Authors:  J Kragh; N Tønder; B R Finsen; J Zimmer; T G Bolwig
Journal:  Exp Brain Res       Date:  1994       Impact factor: 1.972

  3 in total

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