Literature DB >> 11988233

Mouse strain variation in maximal electroshock seizure threshold.

Thomas N Ferraro1, Gregory T Golden, George G Smith, Denis DeMuth, Russell J Buono, Wade H Berrettini.   

Abstract

Maximal electroshock seizure threshold (MEST) is a classical measure of seizure sensitivity with a wide range of experimental applications. We determined MEST in nine inbred mouse strains and one congenic strain using a procedure in which mice are given one shock per day with an incremental (1 mA) current increase in each successive trial until a maximal seizure (tonic hindlimb extension) is elicited. C57BL/6J and DBA/2J mice exhibited the highest and lowest MEST, respectively, with the values of other strains falling between these two extremes. The relative rank order of MEST values by inbred strain (highest to lowest) is as follows: C57BL/6J > CBA/J = C3H/HeJ > A/J > Balb/cJ = 129/SvIMJ = 129/SvJ > AKR/J > DBA/2J. Results of experiments involving a single electroconvulsive shock given to separate groups of mice at different current intensities suggest that determination of MEST by the method used is not affected by repeated sub-maximal seizures. Overall, results document a distinctive mouse strain distribution pattern for MEST. Additionally, low within strain variability suggests that environmental factors which affect quantification of MEST are readily controlled under the conditions of this study. We conclude that MEST represents a useful tool for dissecting the multifactorial nature of seizure sensitivity in mice.

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Year:  2002        PMID: 11988233     DOI: 10.1016/s0006-8993(02)02565-9

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


  22 in total

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8.  Fine mapping of a seizure susceptibility locus on mouse Chromosome 1: nomination of Kcnj10 as a causative gene.

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9.  Collaborative Cross mice reveal extreme epilepsy phenotypes and genetic loci for seizure susceptibility.

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10.  A novel mouse model for pyridoxine-dependent epilepsy due to antiquitin deficiency.

Authors:  Hilal H Al-Shekaili; Terri L Petkau; Izabella Pena; Tess C Lengyell; Nanda M Verhoeven-Duif; Jolita Ciapaite; Marjolein Bosma; Martijn van Faassen; Ido P Kema; Gabriella Horvath; Colin Ross; Elizabeth M Simpson; Jan M Friedman; Clara van Karnebeek; Blair R Leavitt
Journal:  Hum Mol Genet       Date:  2020-11-25       Impact factor: 6.150

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