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Scutellarin protects oxygen/glucose-deprived astrocytes and reduces focal cerebral ischemic injury
Scutellarin, a bioactive flavone isolated from Scutellaria baicalensis, has anti-inflammatory, anti-neurotoxic, anti-apoptotic and anti-oxidative effects and has been used to treat cardiovascular and cerebrovascular diseases in China. However, the mechanisms by which scutellarin mediates neuroprotec...
Autores principales: | , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Medknow Publications & Media Pvt Ltd
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6108207/ https://www.ncbi.nlm.nih.gov/pubmed/30106052 http://dx.doi.org/10.4103/1673-5374.235293 |
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author | Sun, Jing-Bo Li, Yan Cai, Ye-Feng Huang, Yan Liu, Shu Yeung, Patrick KK Deng, Min-Zhen Sun, Guang-Shun Zilundu, Prince LM Hu, Qian-Sheng An, Rui-Xin Zhou, Li-Hua Wang, Li-Xin Cheng, Xiao |
author_facet | Sun, Jing-Bo Li, Yan Cai, Ye-Feng Huang, Yan Liu, Shu Yeung, Patrick KK Deng, Min-Zhen Sun, Guang-Shun Zilundu, Prince LM Hu, Qian-Sheng An, Rui-Xin Zhou, Li-Hua Wang, Li-Xin Cheng, Xiao |
author_sort | Sun, Jing-Bo |
collection | PubMed |
description | Scutellarin, a bioactive flavone isolated from Scutellaria baicalensis, has anti-inflammatory, anti-neurotoxic, anti-apoptotic and anti-oxidative effects and has been used to treat cardiovascular and cerebrovascular diseases in China. However, the mechanisms by which scutellarin mediates neuroprotection in cerebral ischemia remain unclear. The interaction between scutellarin and nicotinamide adenine dinucleotide phosphate oxidase 2 (NOX2) was assessed by molecular docking study, which showed that scutellarin selectively binds to NOX2 with high affinity. Cultures of primary astrocytes isolated from the cerebral cortex of neonatal Sprague-Dawley rats were pretreated with 2, 10 or 50 μM scutellarin for 30 minutes. The astrocytes were then subjected to oxygen/glucose deprivation by incubation for 2 hours in glucose-free Dulbecco's modified Eagle's medium in a 95% N(2)/5% CO(2) incubator, followed by simulated reperfusion for 22 hours. Cell viability was assessed by cell counting kit-8 assay. Expression levels of NOX2, connexin 43 and caspase-3 were assessed by western blot assay. Reactive oxygen species were measured spectrophotometrically. Pretreatment with 10 or 50 μM scutellarin substantially increased viability, reduced the expression of NOX2 and caspase-3, increased the expression of connexin 43, and diminished the levels of reactive oxygen species in astrocytes subjected to ischemia-reperfusion. We also assessed the effects of scutellarin in vivo in the rat transient middle cerebral artery occlusion model of cerebral ischemia-reperfusion injury. Rats were given intraperitoneal injection of 100 mg/kg scutellarin 2 hours before surgery. The Bederson scale was used to assess neurological deficit, and 2,3,5-triphenyltetrazolium chloride staining was used to measure infarct size. Western blot assay was used to assess expression of NOX2 and connexin 43 in brain tissue. Enzyme-linked immunosorbent assay was used to detect 8-hydroxydeoxyguanosine (8-OHdG), 4-hydroxy-2-nonenal (4-HNE) and 3-nitrotyrosin (3-NT) in brain tissue. Immunofluorescence double staining was used to determine the co-expression of caspase-3 and NeuN. Pretreatment with scutellarin improved the neurological function of rats with focal cerebral ischemia, reduced infarct size, diminished the expression of NOX2, reduced levels of 8-OHdG, 4-HNE and 3-NT, and reduced the number of cells co-expressing caspase-3 and NeuN in the injured brain tissue. Furthermore, we examined the effect of the NOX2 inhibitor apocynin. Apocynin substantially increased connexin 43 expression in vivo and in vitro. Collectively, our findings suggest that scutellarin protects against ischemic injury in vitro and in vivo by downregulating NOX2, upregulating connexin 43, decreasing oxidative damage, and reducing apoptotic cell death. |
format | Online Article Text |
id | pubmed-6108207 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Medknow Publications & Media Pvt Ltd |
record_format | MEDLINE/PubMed |
spelling | pubmed-61082072018-09-05 Scutellarin protects oxygen/glucose-deprived astrocytes and reduces focal cerebral ischemic injury Sun, Jing-Bo Li, Yan Cai, Ye-Feng Huang, Yan Liu, Shu Yeung, Patrick KK Deng, Min-Zhen Sun, Guang-Shun Zilundu, Prince LM Hu, Qian-Sheng An, Rui-Xin Zhou, Li-Hua Wang, Li-Xin Cheng, Xiao Neural Regen Res Research Article Scutellarin, a bioactive flavone isolated from Scutellaria baicalensis, has anti-inflammatory, anti-neurotoxic, anti-apoptotic and anti-oxidative effects and has been used to treat cardiovascular and cerebrovascular diseases in China. However, the mechanisms by which scutellarin mediates neuroprotection in cerebral ischemia remain unclear. The interaction between scutellarin and nicotinamide adenine dinucleotide phosphate oxidase 2 (NOX2) was assessed by molecular docking study, which showed that scutellarin selectively binds to NOX2 with high affinity. Cultures of primary astrocytes isolated from the cerebral cortex of neonatal Sprague-Dawley rats were pretreated with 2, 10 or 50 μM scutellarin for 30 minutes. The astrocytes were then subjected to oxygen/glucose deprivation by incubation for 2 hours in glucose-free Dulbecco's modified Eagle's medium in a 95% N(2)/5% CO(2) incubator, followed by simulated reperfusion for 22 hours. Cell viability was assessed by cell counting kit-8 assay. Expression levels of NOX2, connexin 43 and caspase-3 were assessed by western blot assay. Reactive oxygen species were measured spectrophotometrically. Pretreatment with 10 or 50 μM scutellarin substantially increased viability, reduced the expression of NOX2 and caspase-3, increased the expression of connexin 43, and diminished the levels of reactive oxygen species in astrocytes subjected to ischemia-reperfusion. We also assessed the effects of scutellarin in vivo in the rat transient middle cerebral artery occlusion model of cerebral ischemia-reperfusion injury. Rats were given intraperitoneal injection of 100 mg/kg scutellarin 2 hours before surgery. The Bederson scale was used to assess neurological deficit, and 2,3,5-triphenyltetrazolium chloride staining was used to measure infarct size. Western blot assay was used to assess expression of NOX2 and connexin 43 in brain tissue. Enzyme-linked immunosorbent assay was used to detect 8-hydroxydeoxyguanosine (8-OHdG), 4-hydroxy-2-nonenal (4-HNE) and 3-nitrotyrosin (3-NT) in brain tissue. Immunofluorescence double staining was used to determine the co-expression of caspase-3 and NeuN. Pretreatment with scutellarin improved the neurological function of rats with focal cerebral ischemia, reduced infarct size, diminished the expression of NOX2, reduced levels of 8-OHdG, 4-HNE and 3-NT, and reduced the number of cells co-expressing caspase-3 and NeuN in the injured brain tissue. Furthermore, we examined the effect of the NOX2 inhibitor apocynin. Apocynin substantially increased connexin 43 expression in vivo and in vitro. Collectively, our findings suggest that scutellarin protects against ischemic injury in vitro and in vivo by downregulating NOX2, upregulating connexin 43, decreasing oxidative damage, and reducing apoptotic cell death. Medknow Publications & Media Pvt Ltd 2018-08 /pmc/articles/PMC6108207/ /pubmed/30106052 http://dx.doi.org/10.4103/1673-5374.235293 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 Sun, Jing-Bo Li, Yan Cai, Ye-Feng Huang, Yan Liu, Shu Yeung, Patrick KK Deng, Min-Zhen Sun, Guang-Shun Zilundu, Prince LM Hu, Qian-Sheng An, Rui-Xin Zhou, Li-Hua Wang, Li-Xin Cheng, Xiao Scutellarin protects oxygen/glucose-deprived astrocytes and reduces focal cerebral ischemic injury |
title | Scutellarin protects oxygen/glucose-deprived astrocytes and reduces focal cerebral ischemic injury |
title_full | Scutellarin protects oxygen/glucose-deprived astrocytes and reduces focal cerebral ischemic injury |
title_fullStr | Scutellarin protects oxygen/glucose-deprived astrocytes and reduces focal cerebral ischemic injury |
title_full_unstemmed | Scutellarin protects oxygen/glucose-deprived astrocytes and reduces focal cerebral ischemic injury |
title_short | Scutellarin protects oxygen/glucose-deprived astrocytes and reduces focal cerebral ischemic injury |
title_sort | scutellarin protects oxygen/glucose-deprived astrocytes and reduces focal cerebral ischemic injury |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6108207/ https://www.ncbi.nlm.nih.gov/pubmed/30106052 http://dx.doi.org/10.4103/1673-5374.235293 |
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