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Glycyrrhizin Blocks the Detrimental Effects of HMGB1 on Cortical Neurogenesis after Traumatic Neuronal Injury

Despite medical advances, neurological recovery after severe traumatic brain injury (TBI) remains poor. Elevated levels of high mobility group box protein-1 (HMGB1) are associated with poor outcomes; likely via interaction with receptors for advanced-glycation-end-products (RAGE). We examined the hy...

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Autores principales: Manivannan, Susruta, Harari, Balkis, Muzaffar, Maryam, Elalfy, Omar, Hettipathirannahelage, Sameera, James, Zoe, Sharouf, Feras, Ormonde, Chloe, Alsaqati, Mouhamed, Gray, William, Zaben, Malik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7593920/
https://www.ncbi.nlm.nih.gov/pubmed/33096930
http://dx.doi.org/10.3390/brainsci10100760
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author Manivannan, Susruta
Harari, Balkis
Muzaffar, Maryam
Elalfy, Omar
Hettipathirannahelage, Sameera
James, Zoe
Sharouf, Feras
Ormonde, Chloe
Alsaqati, Mouhamed
Gray, William
Zaben, Malik
author_facet Manivannan, Susruta
Harari, Balkis
Muzaffar, Maryam
Elalfy, Omar
Hettipathirannahelage, Sameera
James, Zoe
Sharouf, Feras
Ormonde, Chloe
Alsaqati, Mouhamed
Gray, William
Zaben, Malik
author_sort Manivannan, Susruta
collection PubMed
description Despite medical advances, neurological recovery after severe traumatic brain injury (TBI) remains poor. Elevated levels of high mobility group box protein-1 (HMGB1) are associated with poor outcomes; likely via interaction with receptors for advanced-glycation-end-products (RAGE). We examined the hypothesis that HMGB1 post-TBI is anti-neurogenic and whether this is pharmacologically reversible. Post-natal rat cortical mixed neuro-glial cell cultures were subjected to needle-scratch injury and examined for HMGB1-activation/neuroinflammation. HMGB1-related genes/networks were examined using genome-wide RNA-seq studies in cortical perilesional tissue samples from adult mice. Post-natal rat cortical neural stem/progenitor cell cultures were generated to quantify effects of injury-condition medium (ICM) on neurogenesis with/without RAGE antagonist glycyrrhizin. Needle-injury upregulated TNF-α/NOS-2 mRNA-expressions at 6 h, increased proportions of activated microglia, and caused neuronal loss at 24 h. Transcriptome analysis revealed activation of HMGB1 pathway genes/canonical pathways in vivo at 24 h. A 50% increase in HMGB1 protein expression, and nuclear-to-cytoplasmic translocation of HMGB1 in neurons and microglia at 24 h post-injury was demonstrated in vitro. ICM reduced total numbers/proportions of neuronal cells, but reversed by 0.5 μM glycyrrhizin. HMGB1 is activated following in vivo post mechanical injury, and glycyrrhizin alleviates detrimental effects of ICM on cortical neurogenesis. Our findings highlight glycyrrhizin as a potential therapeutic agent post-TBI.
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spelling pubmed-75939202020-10-30 Glycyrrhizin Blocks the Detrimental Effects of HMGB1 on Cortical Neurogenesis after Traumatic Neuronal Injury Manivannan, Susruta Harari, Balkis Muzaffar, Maryam Elalfy, Omar Hettipathirannahelage, Sameera James, Zoe Sharouf, Feras Ormonde, Chloe Alsaqati, Mouhamed Gray, William Zaben, Malik Brain Sci Article Despite medical advances, neurological recovery after severe traumatic brain injury (TBI) remains poor. Elevated levels of high mobility group box protein-1 (HMGB1) are associated with poor outcomes; likely via interaction with receptors for advanced-glycation-end-products (RAGE). We examined the hypothesis that HMGB1 post-TBI is anti-neurogenic and whether this is pharmacologically reversible. Post-natal rat cortical mixed neuro-glial cell cultures were subjected to needle-scratch injury and examined for HMGB1-activation/neuroinflammation. HMGB1-related genes/networks were examined using genome-wide RNA-seq studies in cortical perilesional tissue samples from adult mice. Post-natal rat cortical neural stem/progenitor cell cultures were generated to quantify effects of injury-condition medium (ICM) on neurogenesis with/without RAGE antagonist glycyrrhizin. Needle-injury upregulated TNF-α/NOS-2 mRNA-expressions at 6 h, increased proportions of activated microglia, and caused neuronal loss at 24 h. Transcriptome analysis revealed activation of HMGB1 pathway genes/canonical pathways in vivo at 24 h. A 50% increase in HMGB1 protein expression, and nuclear-to-cytoplasmic translocation of HMGB1 in neurons and microglia at 24 h post-injury was demonstrated in vitro. ICM reduced total numbers/proportions of neuronal cells, but reversed by 0.5 μM glycyrrhizin. HMGB1 is activated following in vivo post mechanical injury, and glycyrrhizin alleviates detrimental effects of ICM on cortical neurogenesis. Our findings highlight glycyrrhizin as a potential therapeutic agent post-TBI. MDPI 2020-10-21 /pmc/articles/PMC7593920/ /pubmed/33096930 http://dx.doi.org/10.3390/brainsci10100760 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Manivannan, Susruta
Harari, Balkis
Muzaffar, Maryam
Elalfy, Omar
Hettipathirannahelage, Sameera
James, Zoe
Sharouf, Feras
Ormonde, Chloe
Alsaqati, Mouhamed
Gray, William
Zaben, Malik
Glycyrrhizin Blocks the Detrimental Effects of HMGB1 on Cortical Neurogenesis after Traumatic Neuronal Injury
title Glycyrrhizin Blocks the Detrimental Effects of HMGB1 on Cortical Neurogenesis after Traumatic Neuronal Injury
title_full Glycyrrhizin Blocks the Detrimental Effects of HMGB1 on Cortical Neurogenesis after Traumatic Neuronal Injury
title_fullStr Glycyrrhizin Blocks the Detrimental Effects of HMGB1 on Cortical Neurogenesis after Traumatic Neuronal Injury
title_full_unstemmed Glycyrrhizin Blocks the Detrimental Effects of HMGB1 on Cortical Neurogenesis after Traumatic Neuronal Injury
title_short Glycyrrhizin Blocks the Detrimental Effects of HMGB1 on Cortical Neurogenesis after Traumatic Neuronal Injury
title_sort glycyrrhizin blocks the detrimental effects of hmgb1 on cortical neurogenesis after traumatic neuronal injury
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7593920/
https://www.ncbi.nlm.nih.gov/pubmed/33096930
http://dx.doi.org/10.3390/brainsci10100760
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