Literature DB >> 19185570

Exogenous reelin prevents granule cell dispersion in experimental epilepsy.

Martin C Müller1, Matthias Osswald, Stefanie Tinnes, Ute Häussler, Anne Jacobi, Eckart Förster, Michael Frotscher, Carola A Haas.   

Abstract

Temporal lobe epilepsy (TLE) is often accompanied by granule cell dispersion (GCD), a migration defect of granule cells in the dentate gyrus. We have previously shown that a decrease in the expression of reelin, an extracellular matrix protein important for neuronal positioning, is associated with the development of GCD in TLE patients. Here, we used unilateral intrahippocampal injection of kainate (KA) in adult mice which is also associated with GCD formation and a decrease of reelin expression. In this mouse epilepsy model we aimed to prevent GCD development by the application of exogenous reelin. As a prerequisite we analyzed whether the reelin signaling transduction cascade was preserved in the KA-injected hippocampus. Using in situ hybridization and Western blot analysis we found that the expression of the reelin signaling components, apolipoprotein E receptor 2, the very-low-density lipoprotein receptor and the intracellular adaptor protein disabled 1, was maintained in dentate granule cells after KA injection. Next, recombinant reelin was infused into the KA-injected hippocampus by osmotic minipumps over a period of 2 weeks. Quantitative analysis of granule cell layer width revealed a significant reduction of GCD in reelin-treated, but not in saline-infused animals when compared to KA injection alone. Our findings highlight the crucial role of reelin for the maintenance of granule cell lamination in the dentate gyrus of adult mice and show that a reelin deficiency is causally involved in GCD development.

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Year:  2009        PMID: 19185570     DOI: 10.1016/j.expneurol.2008.12.029

Source DB:  PubMed          Journal:  Exp Neurol        ISSN: 0014-4886            Impact factor:   5.330


  23 in total

1.  Trimethyltin Modulates Reelin Expression and Endogenous Neurogenesis in the Hippocampus of Developing Rats.

Authors:  Amelia Toesca; Maria Concetta Geloso; Adriana Maria Mongiovì; Alfredo Furno; Arcangelo Schiattarella; Fabrizio Michetti; Valentina Corvino
Journal:  Neurochem Res       Date:  2016-02-25       Impact factor: 3.996

2.  Reelin protects against amyloid β toxicity in vivo.

Authors:  Courtney Lane-Donovan; Gary T Philips; Catherine R Wasser; Murat S Durakoglugil; Irene Masiulis; Ajeet Upadhaya; Theresa Pohlkamp; Cagil Coskun; Tiina Kotti; Laura Steller; Robert E Hammer; Michael Frotscher; Hans H Bock; Joachim Herz
Journal:  Sci Signal       Date:  2015-07-07       Impact factor: 8.192

Review 3.  Long non-coding RNAs in nervous system function and disease.

Authors:  Irfan A Qureshi; John S Mattick; Mark F Mehler
Journal:  Brain Res       Date:  2010-04-07       Impact factor: 3.252

4.  Loss and reorganization of calretinin-containing interneurons in the epileptic human hippocampus.

Authors:  Kinga Tóth; Loránd Eross; János Vajda; Péter Halász; Tamás F Freund; Zsófia Maglóczky
Journal:  Brain       Date:  2010-06-24       Impact factor: 13.501

5.  An association analysis of reelin gene (RELN) polymorphisms with childhood epilepsy in eastern Indian population from West Bengal.

Authors:  Shruti Dutta; Prasanta K Gangopadhyay; Swagata Sinha; Anindita Chatterjee; Saurabh Ghosh; Usha Rajamma
Journal:  Cell Mol Neurobiol       Date:  2010-08-10       Impact factor: 5.046

6.  Hippocampal Formation Maldevelopment and Sudden Unexpected Death across the Pediatric Age Spectrum.

Authors:  Hannah C Kinney; Annapurna H Poduri; Jane B Cryan; Robin L Haynes; Lisa Teot; Lynn A Sleeper; Ingrid A Holm; Gerald T Berry; Sanjay P Prabhu; Simon K Warfield; Catherine Brownstein; Harry S Abram; Michael Kruer; Walter L Kemp; Beata Hargitai; Joanne Gastrang; Othon J Mena; Elisabeth A Haas; Roya Dastjerdi; Dawna D Armstrong; Richard D Goldstein
Journal:  J Neuropathol Exp Neurol       Date:  2016-09-09       Impact factor: 3.685

Review 7.  Role of Reelin in the development and maintenance of cortical lamination.

Authors:  Michael Frotscher; Xuejun Chai; Hans H Bock; Carola A Haas; Eckart Förster; Shanting Zhao
Journal:  J Neural Transm (Vienna)       Date:  2009-04-25       Impact factor: 3.575

Review 8.  Reelin deficiency causes granule cell dispersion in epilepsy.

Authors:  Carola A Haas; Michael Frotscher
Journal:  Exp Brain Res       Date:  2009-07-26       Impact factor: 1.972

9.  Role of Altered Expression, Activity and Sub-cellular Distribution of Various Histone Deacetylases (HDACs) in Mesial Temporal Lobe Epilepsy with Hippocampal Sclerosis.

Authors:  Arpna Srivastava; Jyotirmoy Banerjee; Vivek Dubey; Manjari Tripathi; P Sarat Chandra; M C Sharma; Sanjeev Lalwani; Fouzia Siraj; Ramesh Doddamani; Aparna Banerjee Dixit
Journal:  Cell Mol Neurobiol       Date:  2020-11-28       Impact factor: 5.046

Review 10.  Revealing the Precise Role of Calretinin Neurons in Epilepsy: We Are on the Way.

Authors:  Yingbei Qi; Heming Cheng; Yi Wang; Zhong Chen
Journal:  Neurosci Bull       Date:  2021-07-29       Impact factor: 5.203

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