Literature DB >> 20362024

Characterization of neuronal and astroglial responses to ER stress in the hippocampal CA1 area in mice following transient forebrain ischemia.

Nobuhiro Osada1, Yasuhiro Kosuge, Kumiko Ishige, Yoshihisa Ito.   

Abstract

Transient forebrain ischemia has been shown to cause neuronal injury in the CA1 area of the hippocampus in mice. In addition to neuronal injury, astrocytes in area CA1 undergo apoptosis under ischemic conditions. Although failure of impaired astrocytes to take up glutamate is thought to contribute to the pathogenesis of cerebral ischemia, the molecular mechanism underlying this phenomenon remains unexplored. In the present study, we investigated neuronal and astroglial responses to endoplasmic reticulum (ER) stress, which is an important sequela of transient forebrain ischemia in the hippocampus of mice. Cellular injury was observed in area CA1 of the hippocampus 72h after reperfusion, and ssDNA positivity was detectable in some glial cells as well as neurons in this area. An increase of 78-kDa glucose-regulated protein (GRP78), an indicator of ER stress, was detected in pyramidal neurons and astrocytes in this area after the insult. Immunohistochemical analysis showed that caspase-12 was increased in pyramidal neurons and astrocytes located in the extrapyramidal cell layer. Immunoreactivity for C/EBP homologous protein (CHOP) was increased significantly in pyramidal cells but not in astrocytes. These results suggest that astrocytes as well as pyramidal neurons in area CA1 undergo apoptosis through an ER stress-dependent mechanism after ischemia. Unlike the situation in neuronal apoptosis, CHOP does not play a role in the cell death of astrocytes.

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Year:  2010        PMID: 20362024     DOI: 10.1016/j.neuint.2010.03.017

Source DB:  PubMed          Journal:  Neurochem Int        ISSN: 0197-0186            Impact factor:   3.921


  19 in total

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Journal:  Mol Neurobiol       Date:  2014-07-22       Impact factor: 5.590

2.  MKP-1 antagonizes C/EBPβ activity and lowers the apoptotic threshold after ischemic injury.

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Authors:  Palsamy Periyasamy; Toshimichi Shinohara
Journal:  Prog Retin Eye Res       Date:  2017-08-31       Impact factor: 21.198

Review 4.  Loss of endoplasmic reticulum Ca2+ homeostasis: contribution to neuronal cell death during cerebral ischemia.

Authors:  Ankur Bodalia; Hongbin Li; Michael F Jackson
Journal:  Acta Pharmacol Sin       Date:  2012-10-29       Impact factor: 6.150

5.  Cellular and Subcellular Localization of Endoplasmic Reticulum Chaperone GRP78 Following Transient Focal Cerebral Ischemia in Rats.

Authors:  Xuyan Jin; Dong Kyu Kim; Tae-Ryong Riew; Hong Lim Kim; Mun-Yong Lee
Journal:  Neurochem Res       Date:  2018-05-17       Impact factor: 3.996

6.  Disparity among neural injury models and the unfolded protein response.

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Journal:  J Neurol Disord Stroke       Date:  2014-02-21

7.  Ischemia-like oxygen and glucose deprivation mediates down-regulation of cell surface γ-aminobutyric acidB receptors via the endoplasmic reticulum (ER) stress-induced transcription factor CCAAT/enhancer-binding protein (C/EBP)-homologous protein (CHOP).

Authors:  Patrick J Maier; Khaled Zemoura; Mario A Acuña; Gonzalo E Yévenes; Hanns Ulrich Zeilhofer; Dietmar Benke
Journal:  J Biol Chem       Date:  2014-03-25       Impact factor: 5.157

8.  CHOP silencing reduces acute brain injury in the rat model of subarachnoid hemorrhage.

Authors:  Zhaohui He; Robert P Ostrowski; Xiaochuan Sun; Qingyi Ma; Bing Huang; Yan Zhan; John H Zhang
Journal:  Stroke       Date:  2011-12-15       Impact factor: 10.170

9.  YiQiFuMai Powder Injection Ameliorates Cerebral Ischemia by Inhibiting Endoplasmic Reticulum Stress-Mediated Neuronal Apoptosis.

Authors:  Guosheng Cao; Huana Zhou; Nan Jiang; Yuwei Han; Yang Hu; Yuanyuan Zhang; Jin Qi; Junping Kou; Boyang Yu
Journal:  Oxid Med Cell Longev       Date:  2016-03-20       Impact factor: 6.543

10.  Transcription factor changes following long term cerebral ischemia/reperfusion injury.

Authors:  Hongbo Zhang; Weijuan Gao; Tao Qian; Jinglong Tang; Jun Li
Journal:  Neural Regen Res       Date:  2013-04-05       Impact factor: 5.135

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