Literature DB >> 21598036

p65/RelA-Ser529 NF-κB subunit phosphorylation induces autophagic astroglial death (Clasmatodendrosis) following status epilepticus.

Hea Jin Ryu1, Ji-Eun Kim, Seong-Il Yeo, Tae-Cheon Kang.   

Abstract

Clasmatodendrosis is an irreversible astroglial degenerative change, which includes extensive swelling and vacuolization of cell bodies and disintegrated and beaded processes. This study was designed to elucidate whether clasmatodendrosis may be one of the autophagy-related degeneration of astrocytes. In this study, clasmatodendritic astrocytes were observed only in the stratum radiatum in the CA1 region. Vacuoles in clasmatodendritic astrocytes showed LAMP-1 immunoreactivity. In addition, both LC3-II and Beclin-1 expression were detected in most of clasmatodendritic astrocytes as well as a few non-vacuolized astrocytes. Clasmatodendritic astrocytes also showed p65/RelA-Ser529 phosphorylation in the nuclei. The neutralization of TNF-α by sTNFp55R infusion reduced clasmatodendritic astrocytes with nuclear p65/RelA-Ser529 phosphorylation. Therefore, these findings suggest that clasmatodendrosis may be autophagic astroglial death in response to epileptic seizures through TNF-α-mediated p65/RelA-Ser529 phosphorylation.

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Year:  2011        PMID: 21598036     DOI: 10.1007/s10571-011-9706-1

Source DB:  PubMed          Journal:  Cell Mol Neurobiol        ISSN: 0272-4340            Impact factor:   5.046


  46 in total

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  24 in total

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3.  The Differential DRP1 Phosphorylation and Mitochondrial Dynamics in the Regional Specific Astroglial Death Induced by Status Epilepticus.

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6.  PARP1 activation/expression modulates regional-specific neuronal and glial responses to seizure in a hemodynamic-independent manner.

Authors:  J-E Kim; Y-J Kim; J Y Kim; T-C Kang
Journal:  Cell Death Dis       Date:  2014-08-07       Impact factor: 8.469

7.  P2X7 receptor-mediated PARP1 activity regulates astroglial death in the rat hippocampus following status epilepticus.

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9.  miR-96 attenuates status epilepticus-induced brain injury by directly targeting Atg7 and Atg16L1.

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10.  Galangin suppresses human laryngeal carcinoma via modulation of caspase-3 and AKT signaling pathways.

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