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Tytuł pozycji:

TAT-Ngn2 Enhances Cognitive Function Recovery and Regulates Caspase-Dependent and Mitochondrial Apoptotic Pathways After Experimental Stroke

Tytuł:
TAT-Ngn2 Enhances Cognitive Function Recovery and Regulates Caspase-Dependent and Mitochondrial Apoptotic Pathways After Experimental Stroke
Autorzy:
Yu Zhao
Jinling Wang
Jiwei Du
Baixiang Li
Xingchun Gou
Jiannan Liu
Lichao Hou
Hanfei Sang
Bin Deng
Temat:
global cerebral ischemia
neurogenin-2
brain-derived neurotrophic factor
transactivator of transcription domain
apoptosis
Neurosciences. Biological psychiatry. Neuropsychiatry
RC321-571
Źródło:
Frontiers in Cellular Neuroscience, Vol 12 (2018)
Wydawca:
Frontiers Media S.A., 2018.
Rok publikacji:
2018
Kolekcja:
LCC:Neurosciences. Biological psychiatry. Neuropsychiatry
Typ dokumentu:
article
Opis pliku:
electronic resource
Język:
English
ISSN:
1662-5102
Relacje:
https://www.frontiersin.org/article/10.3389/fncel.2018.00475/full; https://doaj.org/toc/1662-5102
DOI:
10.3389/fncel.2018.00475
Dostęp URL:
https://doaj.org/article/a994f2aea505496985533c240876d24d  Link otwiera się w nowym oknie
Numer akcesji:
edsdoj.994f2aea505496985533c240876d24d
Czasopismo naukowe
Neurogenin-2 (Ngn2) is a basic helix-loop-helix (bHLH) transcription factor that contributes to the identification and specification of neuronal fate during neurogenesis. In our previous study, we found that Ngn2 plays an important role in alleviating neuronal apoptosis, which may be viewed as an attractive candidate target for the treatment of cerebral ischemia. However, novel strategies require an understanding of the function and mechanism of Ngn2 in mature hippocampal neurons after global cerebral ischemic injury. Here, we found that the expression of Ngn2 decreased in the hippocampus after global cerebral ischemic injury in mice and in primary hippocampal neurons after oxygen glucose deprivation (OGD) injury. Then, transactivator of transcription (TAT)-Ngn2, which was constructed by fusing a TAT domain to Ngn2, was effectively transported and incorporated into hippocampal neurons after intraperitoneal (i.p.) injection and enhanced cognitive functional recovery in the acute stage after reperfusion. Furthermore, TAT-Ngn2 alleviated hippocampal neuronal damage and apoptosis, and inhibited the cytochrome C (CytC) leak from the mitochondria to the cytoplasm through regulating the expression levels of brain-derived neurotrophic factor (BDNF), phosphorylation tropomyosin-related kinase B (pTrkB), Bcl-2, Bax and cleaved caspase-3 after reperfusion injury in vivo and in vitro. These findings suggest that the downregulation of Ngn2 expression may have an important role in triggering brain injury after ischemic stroke and that the neuroprotection of TAT-Ngn2 against stroke might involve the modulation of BDNF-TrkB signaling that regulates caspase-dependent and mitochondrial apoptotic pathways, which may be an attractive therapeutic strategy for cerebral ischemic injury.

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