Literature DB >> 6498517

Seizures produced by pilocarpine in mice: a behavioral, electroencephalographic and morphological analysis.

W A Turski, E A Cavalheiro, Z A Bortolotto, L M Mello, M Schwarz, L Turski.   

Abstract

Increasing doses of pilocarpine, 100-400 mg/kg, were given intraperitoneally to mice and the resulting behavioral, electroencephalographic and neuropathological alterations were studied. No behavioral phenomena were observed in mice treated with the lowest dose of pilocarpine. Occasional tremor and myoclonus of hindlimbs were found in animals which received pilocarpine in a dose of 200 mg/kg. At doses of 300, 325 and 350 mg/kg, pilocarpine produced a sequence of behavioral alterations including staring spells, limbic gustatory automatisms and motor limbic seizures that developed over 15-30 min and built up progressively into a limbic status epilepticus lasting for several hours. The highest dose of pilocarpine, 400 mg/kg, was generally lethal to mice. Pilocarpine produced both interictal and ictal epileptiform activity in the electroencephalogram (EEG). The earliest EEG alterations appeared in the hippocampus and then spread to cortical areas. EEG seizures started 10-15 min after injection of large doses of pilocarpine, 300-350 mg/kg. Ictal periods lasted for 1-2 min, recurred every 5-10 min and were followed by periods of depression of the EEG activity. By 30-45 min paroxysmal activity resulted in a status epilepticus. Examination of frontal forebrain sections with light microscopy revealed a widespread damage to several brain regions including the hippocampus, amygdala, thalamus, olfactory cortex, neocortex and substantia nigra. Scopolamine, 10 mg/kg, and diazepam, 10 mg/kg, prevented the development of convulsive activity and brain damage produced by pilocarpine. The results emphasize that excessive and sustained stimulation of cholinergic receptors can lead to seizures and seizure-related brain damage in mice. It is proposed that systemic pilocarpine in mice provides a useful animal model for studying mechanisms of and therapeutic approaches to temporal lobe epilepsy.

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Year:  1984        PMID: 6498517     DOI: 10.1016/0006-8993(84)90177-x

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  81 in total

1.  Non-linear classification of heart rate parameters as a biomarker for epileptogenesis.

Authors:  Farshad Kheiri; Anatol Bragin; Jerome Engel; Joel Almajano; Eamon Winden
Journal:  Epilepsy Res       Date:  2012-02-02       Impact factor: 3.045

2.  Factors affecting outcomes of pilocarpine treatment in a mouse model of temporal lobe epilepsy.

Authors:  Paul S Buckmaster; Megan M Haney
Journal:  Epilepsy Res       Date:  2012-06-19       Impact factor: 3.045

3.  Chronic deficit in the expression of voltage-gated potassium channel Kv3.4 subunit in the hippocampus of pilocarpine-treated epileptic rats.

Authors:  Luis F Pacheco Otalora; Frank Skinner; Mauro S Oliveira; Bianca Farrell; Massoud F Arshadmansab; Tarun Pandari; Ileana Garcia; Leslie Robles; Gerardo Rosas; Carlos F Mello; Boris S Ermolinsky; Emilio R Garrido-Sanabria
Journal:  Brain Res       Date:  2010-10-21       Impact factor: 3.252

4.  Impaired expression and function of group II metabotropic glutamate receptors in pilocarpine-treated chronically epileptic rats.

Authors:  Emilio R Garrido-Sanabria; Luis F Pacheco Otalora; Massoud F Arshadmansab; Berenice Herrera; Sebastian Francisco; Boris S Ermolinsky
Journal:  Brain Res       Date:  2008-09-10       Impact factor: 3.252

Review 5.  The pilocarpine model of epilepsy.

Authors:  E A Cavalheiro
Journal:  Ital J Neurol Sci       Date:  1995 Feb-Mar

6.  Cyclothiazide induces seizure behavior in freely moving rats.

Authors:  Shuzhen Kong; Binbin Qian; Jianhui Liu; Mingxin Fan; Gong Chen; Yun Wang
Journal:  Brain Res       Date:  2010-07-30       Impact factor: 3.252

7.  Neurosteroidal modulation of in vitro epileptiform activity is enhanced in pilocarpine-treated epileptic rats.

Authors:  Zahra Shiri; Rochelle Herrington; Maxime Lévesque; Massimo Avoli
Journal:  Neurobiol Dis       Date:  2015-03-24       Impact factor: 5.996

8.  Electroencephalography and behavior patterns during experimental status epilepticus.

Authors:  Ewa Lewczuk; Suchitra Joshi; John Williamson; Mouna Penmetsa; Sarah Shan; Jaideep Kapur
Journal:  Epilepsia       Date:  2017-12-06       Impact factor: 5.864

9.  The role of transcription factors cyclic-AMP responsive element modulator (CREM) and inducible cyclic-AMP early repressor (ICER) in epileptogenesis.

Authors:  B E Porter; I V Lund; F P Varodayan; R W Wallace; J A Blendy
Journal:  Neuroscience       Date:  2008-01-17       Impact factor: 3.590

10.  Down-regulation of BK channel expression in the pilocarpine model of temporal lobe epilepsy.

Authors:  Luis F Pacheco Otalora; Eder F Hernandez; Massoud F Arshadmansab; Sebastian Francisco; Michael Willis; Boris Ermolinsky; Masoud Zarei; Hans-Guenther Knaus; Emilio R Garrido-Sanabria
Journal:  Brain Res       Date:  2008-01-18       Impact factor: 3.252

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