Somatostatin Release in the Hippocampus in the Kindling Model of Epilepsy
Explore this paper's citation graph
Summary
It is demonstrated that hippocampal somatostatin release is increased in the kindling model in vivo, and this phenomenon is associated with enhanced somatstatin release in vivo.
- Type
- article
- Published
- 2000-06-01
- Cited by
- 27
- References
- 44
- Access
- Open access
- OpenAlex
- https://openalex.org/W10820211
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:20851596
Keywords
Psychotherapist, Psychoanalytic theory, Action (physics), Psychology, Child psychotherapy
References
- Somatostatin acts in CA1 and CA3 to reduce hippocampal epileptiform activity.
- Cellular and molecular basis of epilepsy
- A peptidase-resistant cyclic octapeptide analogue of somatostatin (SMS 201-995) modulates seizures induced by quinolinic and kainic acids differently in the rat hippocampus.
- Hippocampal slices from kindled rats show an increased sensitivity for induction of epileptiform activity by changes in extracellular ion concentrations.
- Kindling induces long-lasting alterations in response of hippocampal neurons to elevated potassium levels in vitro.
- Abnormal hyperexcitability of hippocampal slices from kindled rats is transient.
- Effect of kindling on potassium-induced electrographic seizures in vitro.
- Development of Epileptic Seizures through Brain Stimulation at Low Intensity
- Time‐ and Region‐Specific Variations in Somatostatin Release Following Amygdala Kindling in the Rat
- Kainic acid induced seizures: changes in somatostatin, substance P and neurotensin.
- Entorhinal kindling permanently enhances Ca2(+)-dependent L-glutamate release in regio inferior of rat hippocampus.
- Somatostatin, neuropeptide Y, neurokinin B and cholecystokinin immunoreactivity in two chronic models of temporal lobe epilepsy.
- The regional distribution and chromatographic behaviour of somatostatin in human brain
- Neuronal release of somatostatin in the rat striatum: an in vivo microdialysis study.
- Hippocampal interneuron loss and plasticity in human temporal lobe epilepsy.
- Increased Expression of GAP‐43, Somatostatin and Neuropeptide Y mRNA in the Hippocampus During Development of Hippocampal Kindling in Rats
- Extracellular Somatostatin Measured by Microdialysis in the Hippocampus of Freely Moving Rats: Evidence for Neuronal Release
- Increased somatostatin and enkephalin-like immunoreactivity in the rat hippocampus following hippocampal kindling.
- Anti-somatostatin antibody enhances the rate of hippocampal kindling in rats.
- Decreased hippocampal inhibition and a selective loss of interneurons in experimental epilepsy.
Cited by
- Increased extracellular levels of glutamate in the hippocampus of chronically epileptic rats.
- Somatostatin in the dentate gyrus.
- Plasticité de la somatostatine et du récepteur sst2A dans l’embrasement hippocampique
- Kainate seizures increase nociceptin/orphanin FQ release in the rat hippocampus and thalamus: a microdialysis study
- Neuropeptides in epilepsy.
- Induction of B1 bradykinin receptors in the kindled hippocampus increases extracellular glutamate levels: a microdialysis study.
- Amygdala kindling differentially regulates the expression of the elements involved in TRH transmission.
- Estradiol regulates large dense core vesicles in the hippocampus of adult female rats
- Acute stress and dexamethasone rapidly increase hippocampal somatostatin synthesis and release from the dentate gyrus hilus
- The Role of the Neuropeptide Somatostatin on Methamphetamine and Glutamate-Induced Neurotoxicity in the Striatum of Mice
- Stage-specific Modulation of Neprilysin and Aminopeptidase N in the Limbic System During Kindling Progression
- Hippocampal sst1 receptors are autoreceptors and do not affect seizures in rats
- Somatostatin: an endogenous antiepileptic.
- Plasticity of somatostatin and somatostatin sst2A receptors in the rat dentate gyrus during kindling epileptogenesis
- THE EFFECT OF OCTREOTIDE ON KAINATE-INDUCED WET DOG SHAKES AND SEIZURE ACTIVITY IN MALE AND FEMALE RATS
- Neuropeptides as Targets for the Development of Anticonvulsant Drugs
- Impairment of GABA release in the hippocampus at the time of the first spontaneous seizure in the pilocarpine model of temporal lobe epilepsy.
- Somatostatin induces striatal dopamine release and contralateral turning behaviour in the mouse.
- Hyperexcitability: From Normal Fear to Pathological Anxiety and Trauma
- Pentylenetetrazole kindling induces dynamic changes in GAD65 expression in hippocampal somatostatin interneurons.