Literature DB >> 17376845

Hippocampal seizure resistance and reduced neuronal excitotoxicity in mice lacking the Cav2.3 E/R-type voltage-gated calcium channel.

Marco Weiergräber1, Margit Henry, Kayalvizhi Radhakrishnan, Jürgen Hescheler, Toni Schneider.   

Abstract

Voltage-gated calcium channels are key components in the etiology and pathogenesis of epilepsies. Former studies mainly focused on P/Q-type Ca(v)2.1 and T-type Ca(v)3.2 Ca(2+) channels involved in absence epileptogenesis, but recent findings also point to an intriguing role of the Ca(v)2.3 E/R-type Ca(2+) channel in ictogenesis and seizure propagation. Based on the observation that Ca(v)2.3 is thought to induce plateau potentials in CA1 pyramidal cells, which can trigger epileptiform activity, our recent investigation revealed reduced PTZ-seizure susceptibility and altered seizure architecture in Ca(v)2.3(-/-) mice compared with controls. In the present study we tested hippocampal seizure susceptibility in Ca(v)2.3-deficient mice using surface and deep intrahippocampal telemetric EEG recordings as well as phenotypic seizure video analysis. Administration of kainic acid (30 mg/kg ip) revealed clear alteration in behavioral seizure architecture and dramatic resistance to limbic seizures in Ca(v)2.3(-/-) mice compared with controls, whereas no difference in hippocampal EEG seizure activity between both genotypes could be detected at this suprathreshold dosage. The same tendency was observed for NMDA seizure susceptibility (150 mg/kg ip) approaching the level of significance. In addition, histochemical analysis within the hippocampus revealed that excitotoxic effects after kainic acid administration are absent in Ca(v)2.3(-/-) mice, whereas Ca(v)2.3(+/+) animals exhibited clear and typical signs of excitotoxic cell death. These findings clearly indicate that the Ca(v)2.3 voltage-gated calcium channel plays a crucial role in both hippocampal ictogenesis and seizure generalization and is of central importance in neuronal degeneration after excitotoxic events.

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Year:  2007        PMID: 17376845     DOI: 10.1152/jn.01193.2006

Source DB:  PubMed          Journal:  J Neurophysiol        ISSN: 0022-3077            Impact factor:   2.714


  24 in total

Review 1.  The relevance of individual genetic background and its role in animal models of epilepsy.

Authors:  P Elyse Schauwecker
Journal:  Epilepsy Res       Date:  2011-10-15       Impact factor: 3.045

2.  Disruption of GpI mGluR-Dependent Cav2.3 Translation in a Mouse Model of Fragile X Syndrome.

Authors:  Erin E Gray; Jonathan G Murphy; Ying Liu; Ivan Trang; G Travis Tabor; Lin Lin; Dax A Hoffman
Journal:  J Neurosci       Date:  2019-07-26       Impact factor: 6.167

3.  The CaV2.3 R-type voltage-gated Ca2+ channel in mouse sleep architecture.

Authors:  Magdalena Elisabeth Siwek; Ralf Müller; Christina Henseler; Karl Broich; Anna Papazoglou; Marco Weiergräber
Journal:  Sleep       Date:  2014-05-01       Impact factor: 5.849

Review 4.  Mitochondrial dysfunction and oxidative stress: a contributing link to acquired epilepsy?

Authors:  Simon Waldbaum; Manisha Patel
Journal:  J Bioenerg Biomembr       Date:  2010-12       Impact factor: 2.945

5.  Calcium channel dysfunction in inferior colliculus neurons of the genetically epilepsy-prone rat.

Authors:  Prosper N'gouemo; Carl L Faingold; Martin Morad
Journal:  Neuropharmacology       Date:  2008-12-06       Impact factor: 5.250

6.  De Novo Pathogenic Variants in CACNA1E Cause Developmental and Epileptic Encephalopathy with Contractures, Macrocephaly, and Dyskinesias.

Authors:  Katherine L Helbig; Robert J Lauerer; Jacqueline C Bahr; Ivana A Souza; Candace T Myers; Betül Uysal; Niklas Schwarz; Maria A Gandini; Sun Huang; Boris Keren; Cyril Mignot; Alexandra Afenjar; Thierry Billette de Villemeur; Delphine Héron; Caroline Nava; Stéphanie Valence; Julien Buratti; Christina R Fagerberg; Kristina P Soerensen; Maria Kibaek; Erik-Jan Kamsteeg; David A Koolen; Boudewijn Gunning; H Jurgen Schelhaas; Michael C Kruer; Jordana Fox; Somayeh Bakhtiari; Randa Jarrar; Sergio Padilla-Lopez; Kristin Lindstrom; Sheng Chih Jin; Xue Zeng; Kaya Bilguvar; Antigone Papavasileiou; Qinghe Xing; Changlian Zhu; Katja Boysen; Filippo Vairo; Brendan C Lanpher; Eric W Klee; Jan-Mendelt Tillema; Eric T Payne; Margot A Cousin; Teresa M Kruisselbrink; Myra J Wick; Joshua Baker; Eric Haan; Nicholas Smith; Azita Sadeghpour; Erica E Davis; Nicholas Katsanis; Mark A Corbett; Alastair H MacLennan; Jozef Gecz; Saskia Biskup; Eva Goldmann; Lance H Rodan; Elizabeth Kichula; Eric Segal; Kelly E Jackson; Alexander Asamoah; David Dimmock; Julie McCarrier; Lorenzo D Botto; Francis Filloux; Tatiana Tvrdik; Gregory D Cascino; Sherry Klingerman; Catherine Neumann; Raymond Wang; Jessie C Jacobsen; Melinda A Nolan; Russell G Snell; Klaus Lehnert; Lynette G Sadleir; Britt-Marie Anderlid; Malin Kvarnung; Renzo Guerrini; Michael J Friez; Michael J Lyons; Jennifer Leonhard; Gabriel Kringlen; Kari Casas; Christelle M El Achkar; Lacey A Smith; Alexander Rotenberg; Annapurna Poduri; Alba Sanchis-Juan; Keren J Carss; Julia Rankin; Adam Zeman; F Lucy Raymond; Moira Blyth; Bronwyn Kerr; Karla Ruiz; Jill Urquhart; Imelda Hughes; Siddharth Banka; Ulrike B S Hedrich; Ingrid E Scheffer; Ingo Helbig; Gerald W Zamponi; Holger Lerche; Heather C Mefford
Journal:  Am J Hum Genet       Date:  2018-10-18       Impact factor: 11.025

Review 7.  The Role of Calcium Channels in Epilepsy.

Authors:  Sanjeev Rajakulendran; Michael G Hanna
Journal:  Cold Spring Harb Perspect Med       Date:  2016-01-04       Impact factor: 6.915

Review 8.  The Physiology, Pathology, and Pharmacology of Voltage-Gated Calcium Channels and Their Future Therapeutic Potential.

Authors:  Gerald W Zamponi; Joerg Striessnig; Alexandra Koschak; Annette C Dolphin
Journal:  Pharmacol Rev       Date:  2015-10       Impact factor: 25.468

9.  Breeding of Cav2.3 deficient mice reveals Mendelian inheritance in contrast to complex inheritance in Cav3.2 null mutant breeding.

Authors:  Anna Papazoglou; Christina Henseler; Karl Broich; Johanna Daubner; Marco Weiergräber
Journal:  Sci Rep       Date:  2021-07-07       Impact factor: 4.379

Review 10.  Altered Expression of Ion Channels in White Matter Lesions of Progressive Multiple Sclerosis: What Do We Know About Their Function?

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Journal:  Front Cell Neurosci       Date:  2021-06-25       Impact factor: 5.505

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