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Dl‐3n‐butylphthalide improves traumatic brain injury recovery via inhibiting autophagy‐induced blood‐brain barrier disruption and cell apoptosis

Blood‐brain barrier (BBB) disruption and neuronal apoptosis are important pathophysiological processes after traumatic brain injury (TBI). In clinical stroke, Dl‐3n‐butylphthalide (Dl‐NBP) has a neuroprotective effect with anti‐inflammatory, anti‐oxidative, anti‐apoptotic and mitochondrion‐protectiv...

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Autores principales: Wu, Fangfang, Xu, Ke, Xu, Kebin, Teng, Chenhuai, Zhang, Man, Xia, Leilei, Zhang, Kairui, Liu, Lei, Chen, Zaifeng, Xiao, Jian, Wu, Yanqing, Zhang, Hongyu, Chen, Daqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6991645/
https://www.ncbi.nlm.nih.gov/pubmed/31840938
http://dx.doi.org/10.1111/jcmm.14691
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author Wu, Fangfang
Xu, Ke
Xu, Kebin
Teng, Chenhuai
Zhang, Man
Xia, Leilei
Zhang, Kairui
Liu, Lei
Chen, Zaifeng
Xiao, Jian
Wu, Yanqing
Zhang, Hongyu
Chen, Daqing
author_facet Wu, Fangfang
Xu, Ke
Xu, Kebin
Teng, Chenhuai
Zhang, Man
Xia, Leilei
Zhang, Kairui
Liu, Lei
Chen, Zaifeng
Xiao, Jian
Wu, Yanqing
Zhang, Hongyu
Chen, Daqing
author_sort Wu, Fangfang
collection PubMed
description Blood‐brain barrier (BBB) disruption and neuronal apoptosis are important pathophysiological processes after traumatic brain injury (TBI). In clinical stroke, Dl‐3n‐butylphthalide (Dl‐NBP) has a neuroprotective effect with anti‐inflammatory, anti‐oxidative, anti‐apoptotic and mitochondrion‐protective functions. However, the effect and molecular mechanism of Dl‐NBP for TBI need to be further investigated. Here, we had used an animal model of TBI and SH‐SY5Y/human brain microvascular endothelial cells to explore it. We found that Dl‐NBP administration exerts a neuroprotective effect in TBI/OGD and BBB disorder, which up‐regulates the expression of tight junction proteins and promotes neuronal survival via inhibiting mitochondrial apoptosis. The expressions of autophagy‐related proteins, including ATG7, Beclin1 and LC3II, were significantly increased after TBI/OGD, and which were reversed by Dl‐NBP treatment both in vivo and in vitro. Moreover, rapamycin treatment had abolished the effect of Dl‐NBP for TBI recovery. Collectively, our current studies indicate that Dl‐NBP treatment improved locomotor functional recovery after TBI by inhibiting the activation of autophagy and consequently blocking the junction protein loss and neuronal apoptosis. Dl‐NBP, as an anti‐inflammatory and anti‐oxidative drug, may act as an effective strategy for TBI recovery.
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spelling pubmed-69916452020-02-03 Dl‐3n‐butylphthalide improves traumatic brain injury recovery via inhibiting autophagy‐induced blood‐brain barrier disruption and cell apoptosis Wu, Fangfang Xu, Ke Xu, Kebin Teng, Chenhuai Zhang, Man Xia, Leilei Zhang, Kairui Liu, Lei Chen, Zaifeng Xiao, Jian Wu, Yanqing Zhang, Hongyu Chen, Daqing J Cell Mol Med Original Articles Blood‐brain barrier (BBB) disruption and neuronal apoptosis are important pathophysiological processes after traumatic brain injury (TBI). In clinical stroke, Dl‐3n‐butylphthalide (Dl‐NBP) has a neuroprotective effect with anti‐inflammatory, anti‐oxidative, anti‐apoptotic and mitochondrion‐protective functions. However, the effect and molecular mechanism of Dl‐NBP for TBI need to be further investigated. Here, we had used an animal model of TBI and SH‐SY5Y/human brain microvascular endothelial cells to explore it. We found that Dl‐NBP administration exerts a neuroprotective effect in TBI/OGD and BBB disorder, which up‐regulates the expression of tight junction proteins and promotes neuronal survival via inhibiting mitochondrial apoptosis. The expressions of autophagy‐related proteins, including ATG7, Beclin1 and LC3II, were significantly increased after TBI/OGD, and which were reversed by Dl‐NBP treatment both in vivo and in vitro. Moreover, rapamycin treatment had abolished the effect of Dl‐NBP for TBI recovery. Collectively, our current studies indicate that Dl‐NBP treatment improved locomotor functional recovery after TBI by inhibiting the activation of autophagy and consequently blocking the junction protein loss and neuronal apoptosis. Dl‐NBP, as an anti‐inflammatory and anti‐oxidative drug, may act as an effective strategy for TBI recovery. John Wiley and Sons Inc. 2019-12-16 2020-01 /pmc/articles/PMC6991645/ /pubmed/31840938 http://dx.doi.org/10.1111/jcmm.14691 Text en © 2019 The Authors. Journal of Cellular and Molecular Medicine published by John Wiley & Sons Ltd and Foundation for Cellular and Molecular Medicine. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Wu, Fangfang
Xu, Ke
Xu, Kebin
Teng, Chenhuai
Zhang, Man
Xia, Leilei
Zhang, Kairui
Liu, Lei
Chen, Zaifeng
Xiao, Jian
Wu, Yanqing
Zhang, Hongyu
Chen, Daqing
Dl‐3n‐butylphthalide improves traumatic brain injury recovery via inhibiting autophagy‐induced blood‐brain barrier disruption and cell apoptosis
title Dl‐3n‐butylphthalide improves traumatic brain injury recovery via inhibiting autophagy‐induced blood‐brain barrier disruption and cell apoptosis
title_full Dl‐3n‐butylphthalide improves traumatic brain injury recovery via inhibiting autophagy‐induced blood‐brain barrier disruption and cell apoptosis
title_fullStr Dl‐3n‐butylphthalide improves traumatic brain injury recovery via inhibiting autophagy‐induced blood‐brain barrier disruption and cell apoptosis
title_full_unstemmed Dl‐3n‐butylphthalide improves traumatic brain injury recovery via inhibiting autophagy‐induced blood‐brain barrier disruption and cell apoptosis
title_short Dl‐3n‐butylphthalide improves traumatic brain injury recovery via inhibiting autophagy‐induced blood‐brain barrier disruption and cell apoptosis
title_sort dl‐3n‐butylphthalide improves traumatic brain injury recovery via inhibiting autophagy‐induced blood‐brain barrier disruption and cell apoptosis
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6991645/
https://www.ncbi.nlm.nih.gov/pubmed/31840938
http://dx.doi.org/10.1111/jcmm.14691
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