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Resatorvid protects against hypoxic-ischemic brain damage in neonatal rats

Secondary brain damage caused by hyperactivation of autophagy and inflammatory responses in neurons plays an important role in hypoxic-ischemic brain damage (HIBD). Although previous studies have implicated Toll-like receptor 4 (TLR4) and nuclear factor kappa-B (NF-κB) in the neuroinflammatory respo...

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Autores principales: Jiang, Li-Jun, Xu, Zhen-Xing, Wu, Ming-Fu, Dong, Gai-Qin, Zhang, Li-Li, Gao, Jun-Yan, Feng, Chen-Xi, Feng, Xing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer - Medknow 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7047798/
https://www.ncbi.nlm.nih.gov/pubmed/31960818
http://dx.doi.org/10.4103/1673-5374.272615
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author Jiang, Li-Jun
Xu, Zhen-Xing
Wu, Ming-Fu
Dong, Gai-Qin
Zhang, Li-Li
Gao, Jun-Yan
Feng, Chen-Xi
Feng, Xing
author_facet Jiang, Li-Jun
Xu, Zhen-Xing
Wu, Ming-Fu
Dong, Gai-Qin
Zhang, Li-Li
Gao, Jun-Yan
Feng, Chen-Xi
Feng, Xing
author_sort Jiang, Li-Jun
collection PubMed
description Secondary brain damage caused by hyperactivation of autophagy and inflammatory responses in neurons plays an important role in hypoxic-ischemic brain damage (HIBD). Although previous studies have implicated Toll-like receptor 4 (TLR4) and nuclear factor kappa-B (NF-κB) in the neuroinflammatory response elicited by brain injury, the role and mechanisms of the TLR4-mediated autophagy signaling pathway in neonatal HIBD are still unclear. We hypothesized that this pathway can regulate brain damage by modulating neuron autophagy and neuroinflammation in neonatal rats with HIBD. Hence, we established a neonatal HIBD rat model using the Rice-Vannucci method, and injected 0.75, 1.5, or 3 mg/kg of the TLR4 inhibitor resatorvid (TAK-242) 30 minutes after hypoxic ischemia. Our results indicate that administering TAK-242 to neonatal rats after HIBD could significantly reduce the infarct volume and the extent of cerebral edema, alleviate neuronal damage and neurobehavioral impairment, and decrease the expression levels of TLR4, phospho-NF-κB p65, Beclin-1, microtubule-associated protein l light chain 3, tumor necrosis factor-α, and interleukin-1β in the hippocampus. Thus, TAK-242 appears to exert a neuroprotective effect after HIBD by inhibiting activation of autophagy and the release of inflammatory cytokines via inhibition of the TLR4/NF-κB signaling pathway. This study was approved by the Laboratory Animal Ethics Committee of Affiliated Hospital of Yangzhou University, China (approval No. 20180114-15) on January 14, 2018.
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spelling pubmed-70477982020-03-13 Resatorvid protects against hypoxic-ischemic brain damage in neonatal rats Jiang, Li-Jun Xu, Zhen-Xing Wu, Ming-Fu Dong, Gai-Qin Zhang, Li-Li Gao, Jun-Yan Feng, Chen-Xi Feng, Xing Neural Regen Res Research Article Secondary brain damage caused by hyperactivation of autophagy and inflammatory responses in neurons plays an important role in hypoxic-ischemic brain damage (HIBD). Although previous studies have implicated Toll-like receptor 4 (TLR4) and nuclear factor kappa-B (NF-κB) in the neuroinflammatory response elicited by brain injury, the role and mechanisms of the TLR4-mediated autophagy signaling pathway in neonatal HIBD are still unclear. We hypothesized that this pathway can regulate brain damage by modulating neuron autophagy and neuroinflammation in neonatal rats with HIBD. Hence, we established a neonatal HIBD rat model using the Rice-Vannucci method, and injected 0.75, 1.5, or 3 mg/kg of the TLR4 inhibitor resatorvid (TAK-242) 30 minutes after hypoxic ischemia. Our results indicate that administering TAK-242 to neonatal rats after HIBD could significantly reduce the infarct volume and the extent of cerebral edema, alleviate neuronal damage and neurobehavioral impairment, and decrease the expression levels of TLR4, phospho-NF-κB p65, Beclin-1, microtubule-associated protein l light chain 3, tumor necrosis factor-α, and interleukin-1β in the hippocampus. Thus, TAK-242 appears to exert a neuroprotective effect after HIBD by inhibiting activation of autophagy and the release of inflammatory cytokines via inhibition of the TLR4/NF-κB signaling pathway. This study was approved by the Laboratory Animal Ethics Committee of Affiliated Hospital of Yangzhou University, China (approval No. 20180114-15) on January 14, 2018. Wolters Kluwer - Medknow 2020-01-09 /pmc/articles/PMC7047798/ /pubmed/31960818 http://dx.doi.org/10.4103/1673-5374.272615 Text en Copyright: © Neural Regeneration Research http://creativecommons.org/licenses/by-nc-sa/4.0 This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.
spellingShingle Research Article
Jiang, Li-Jun
Xu, Zhen-Xing
Wu, Ming-Fu
Dong, Gai-Qin
Zhang, Li-Li
Gao, Jun-Yan
Feng, Chen-Xi
Feng, Xing
Resatorvid protects against hypoxic-ischemic brain damage in neonatal rats
title Resatorvid protects against hypoxic-ischemic brain damage in neonatal rats
title_full Resatorvid protects against hypoxic-ischemic brain damage in neonatal rats
title_fullStr Resatorvid protects against hypoxic-ischemic brain damage in neonatal rats
title_full_unstemmed Resatorvid protects against hypoxic-ischemic brain damage in neonatal rats
title_short Resatorvid protects against hypoxic-ischemic brain damage in neonatal rats
title_sort resatorvid protects against hypoxic-ischemic brain damage in neonatal rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7047798/
https://www.ncbi.nlm.nih.gov/pubmed/31960818
http://dx.doi.org/10.4103/1673-5374.272615
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