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The role of TNF-α in regulating ketamine-induced hippocampal neurotoxicity

INTRODUCTION: Ketamine is commonly used in pediatric anesthesia but recent studies have shown that it could induce neurotoxicity in the developing brain. The inflammatory cytokine, tumor necrosis factor α (TNF-α) is involved in the pathogenesis of various types of neurodegenerations. In the present...

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Autores principales: Zheng, Xiaozhu, Zhou, Jiali, Xia, Yanfei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Termedia Publishing House 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4697060/
https://www.ncbi.nlm.nih.gov/pubmed/26788093
http://dx.doi.org/10.5114/aoms.2015.56355
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author Zheng, Xiaozhu
Zhou, Jiali
Xia, Yanfei
author_facet Zheng, Xiaozhu
Zhou, Jiali
Xia, Yanfei
author_sort Zheng, Xiaozhu
collection PubMed
description INTRODUCTION: Ketamine is commonly used in pediatric anesthesia but recent studies have shown that it could induce neurotoxicity in the developing brain. The inflammatory cytokine, tumor necrosis factor α (TNF-α) is involved in the pathogenesis of various types of neurodegenerations. In the present study, we examined whether TNF-α may regulate ketamine-induced neurotoxicity in the hippocampus of neonatal mouse. MATERIAL AND METHODS: The in vitro organotypic culture of hippocampal slices was used to investigate the gain-of-function and loss-of-function effect of TNF-α modulation on ketamine-induced hippocampal neurotoxicity. Also, western blotting analysis was used to examine the relative pathways associated with TNF-α modulation. In the in vivo Morris water maze test, TNF-α was genetically silenced to see if memory function was improved after anesthesia-induced memory impairment. RESULTS: In in vitro experiments, adding TNF-α enhanced (112.99 ±5.4%, p = 0.015), whereas knocking down TNF-α ameliorated (46.8 ±11.6%, p = 0.003) ketamine-induced apoptosis in hippocampal CA1 neurons in the organotypic culture. Western blotting showed that addition of TNF-α reduced (67.1 ±3.7%, p = 0.022), whereas downregulation of TNF-α increased (126.87 ±8.5%, p = 0.004) the phosphorylation of PKC-ERK pathway in ketamine-treated hippocampus. In in vivo experiments, genetically silencing TNF-α markedly improved the ketamine-induced memory impairment through Morris water maze test. CONCLUSIONS: Our results clearly demonstrated a protective mechanism of down-regulating TNF in ketamine-induced hippocampal neurotoxicity. This study may present a new target for pharmacological intervention to prevent anesthesia-related neurodegeneration in brain.
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spelling pubmed-46970602016-01-19 The role of TNF-α in regulating ketamine-induced hippocampal neurotoxicity Zheng, Xiaozhu Zhou, Jiali Xia, Yanfei Arch Med Sci Basic Research INTRODUCTION: Ketamine is commonly used in pediatric anesthesia but recent studies have shown that it could induce neurotoxicity in the developing brain. The inflammatory cytokine, tumor necrosis factor α (TNF-α) is involved in the pathogenesis of various types of neurodegenerations. In the present study, we examined whether TNF-α may regulate ketamine-induced neurotoxicity in the hippocampus of neonatal mouse. MATERIAL AND METHODS: The in vitro organotypic culture of hippocampal slices was used to investigate the gain-of-function and loss-of-function effect of TNF-α modulation on ketamine-induced hippocampal neurotoxicity. Also, western blotting analysis was used to examine the relative pathways associated with TNF-α modulation. In the in vivo Morris water maze test, TNF-α was genetically silenced to see if memory function was improved after anesthesia-induced memory impairment. RESULTS: In in vitro experiments, adding TNF-α enhanced (112.99 ±5.4%, p = 0.015), whereas knocking down TNF-α ameliorated (46.8 ±11.6%, p = 0.003) ketamine-induced apoptosis in hippocampal CA1 neurons in the organotypic culture. Western blotting showed that addition of TNF-α reduced (67.1 ±3.7%, p = 0.022), whereas downregulation of TNF-α increased (126.87 ±8.5%, p = 0.004) the phosphorylation of PKC-ERK pathway in ketamine-treated hippocampus. In in vivo experiments, genetically silencing TNF-α markedly improved the ketamine-induced memory impairment through Morris water maze test. CONCLUSIONS: Our results clearly demonstrated a protective mechanism of down-regulating TNF in ketamine-induced hippocampal neurotoxicity. This study may present a new target for pharmacological intervention to prevent anesthesia-related neurodegeneration in brain. Termedia Publishing House 2015-12-11 2015-12-10 /pmc/articles/PMC4697060/ /pubmed/26788093 http://dx.doi.org/10.5114/aoms.2015.56355 Text en Copyright © 2015 Termedia & Banach http://creativecommons.org/licenses/by-nc-sa/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0) License, allowing third parties to copy and redistribute the material in any medium or format and to remix, transform, and build upon the material, provided the original work is properly cited and states its license.
spellingShingle Basic Research
Zheng, Xiaozhu
Zhou, Jiali
Xia, Yanfei
The role of TNF-α in regulating ketamine-induced hippocampal neurotoxicity
title The role of TNF-α in regulating ketamine-induced hippocampal neurotoxicity
title_full The role of TNF-α in regulating ketamine-induced hippocampal neurotoxicity
title_fullStr The role of TNF-α in regulating ketamine-induced hippocampal neurotoxicity
title_full_unstemmed The role of TNF-α in regulating ketamine-induced hippocampal neurotoxicity
title_short The role of TNF-α in regulating ketamine-induced hippocampal neurotoxicity
title_sort role of tnf-α in regulating ketamine-induced hippocampal neurotoxicity
topic Basic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4697060/
https://www.ncbi.nlm.nih.gov/pubmed/26788093
http://dx.doi.org/10.5114/aoms.2015.56355
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