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Inhibition of activated NR2B gene- and caspase-3 protein-expression by glutathione following traumatic brain injury in a rat model

BACKGROUND. Traumatic brain injury (TBI) remains a major cause of death and disability. Oxidative stress is an important element of the injury cascade following TBI. Progressive compromise of antioxidant defenses and free radical-mediated lipid peroxidation are one of the major mechanisms of seconda...

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Autores principales: Arifin, Muhammad Zafrullah, Faried, Ahmad, Shahib, Muhammad Nurhalim, Wiriadisastra, Kahdar, Bisri, Tatang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Medknow Publications & Media Pvt Ltd 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3277073/
https://www.ncbi.nlm.nih.gov/pubmed/22347327
http://dx.doi.org/10.4103/1793-5482.92160
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author Arifin, Muhammad Zafrullah
Faried, Ahmad
Shahib, Muhammad Nurhalim
Wiriadisastra, Kahdar
Bisri, Tatang
author_facet Arifin, Muhammad Zafrullah
Faried, Ahmad
Shahib, Muhammad Nurhalim
Wiriadisastra, Kahdar
Bisri, Tatang
author_sort Arifin, Muhammad Zafrullah
collection PubMed
description BACKGROUND. Traumatic brain injury (TBI) remains a major cause of death and disability. Oxidative stress is an important element of the injury cascade following TBI. Progressive compromise of antioxidant defenses and free radical-mediated lipid peroxidation are one of the major mechanisms of secondary TBI. NR2B is a glutamate receptor and its activation is caused by TBI increasing a brain cell death, along with caspase-3 as a hall mark of apoptosis. Glutathione is a potent free radical scavenger that might prevent secondary TBI damage and inhibited apoptosis. MATERIALS AND METHODS. In the present study, it aims to demonstrate the effect of glutathione on inhibition of brain oxidative damage in a TBI rat model. RESULTS. In this study, the expressions of mRNA NR2B in placebo group and groups with glutathione administration at 0, 3, and 6 hours after TBI were 328.14, 229.90, 178.50, and 136.14, respectively (P<0.001). The highest caspase-3 expression was shown in placebo group with 66.7% showing strong positive results (>80%); as expected, glutathione administered in 0, 3, and 6 hours groups had lower strong positive results of 50%, 16.7%, and 16.7%, respectively, (P=0.025). CONCLUSION. In conclusion, this study showed that glutathione administration in a TBI rat model decreased NR2B gene- and caspase-3 protein-expression that lead to the inhibition of brain cell death. Our results suggest that glutathione, as a potent free radical scavenger, has a brain cell protective effect against oxidative damage and cell death induced by TBI in rat model.
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spelling pubmed-32770732012-02-15 Inhibition of activated NR2B gene- and caspase-3 protein-expression by glutathione following traumatic brain injury in a rat model Arifin, Muhammad Zafrullah Faried, Ahmad Shahib, Muhammad Nurhalim Wiriadisastra, Kahdar Bisri, Tatang Asian J Neurosurg Original Article BACKGROUND. Traumatic brain injury (TBI) remains a major cause of death and disability. Oxidative stress is an important element of the injury cascade following TBI. Progressive compromise of antioxidant defenses and free radical-mediated lipid peroxidation are one of the major mechanisms of secondary TBI. NR2B is a glutamate receptor and its activation is caused by TBI increasing a brain cell death, along with caspase-3 as a hall mark of apoptosis. Glutathione is a potent free radical scavenger that might prevent secondary TBI damage and inhibited apoptosis. MATERIALS AND METHODS. In the present study, it aims to demonstrate the effect of glutathione on inhibition of brain oxidative damage in a TBI rat model. RESULTS. In this study, the expressions of mRNA NR2B in placebo group and groups with glutathione administration at 0, 3, and 6 hours after TBI were 328.14, 229.90, 178.50, and 136.14, respectively (P<0.001). The highest caspase-3 expression was shown in placebo group with 66.7% showing strong positive results (>80%); as expected, glutathione administered in 0, 3, and 6 hours groups had lower strong positive results of 50%, 16.7%, and 16.7%, respectively, (P=0.025). CONCLUSION. In conclusion, this study showed that glutathione administration in a TBI rat model decreased NR2B gene- and caspase-3 protein-expression that lead to the inhibition of brain cell death. Our results suggest that glutathione, as a potent free radical scavenger, has a brain cell protective effect against oxidative damage and cell death induced by TBI in rat model. Medknow Publications & Media Pvt Ltd 2011 /pmc/articles/PMC3277073/ /pubmed/22347327 http://dx.doi.org/10.4103/1793-5482.92160 Text en Copyright: © Asian Journal of Neurosurgery http://creativecommons.org/licenses/by-nc-sa/3.0 This is an open-access article distributed under the terms of the Creative Commons Attribution-Noncommercial-Share Alike 3.0 Unported, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Arifin, Muhammad Zafrullah
Faried, Ahmad
Shahib, Muhammad Nurhalim
Wiriadisastra, Kahdar
Bisri, Tatang
Inhibition of activated NR2B gene- and caspase-3 protein-expression by glutathione following traumatic brain injury in a rat model
title Inhibition of activated NR2B gene- and caspase-3 protein-expression by glutathione following traumatic brain injury in a rat model
title_full Inhibition of activated NR2B gene- and caspase-3 protein-expression by glutathione following traumatic brain injury in a rat model
title_fullStr Inhibition of activated NR2B gene- and caspase-3 protein-expression by glutathione following traumatic brain injury in a rat model
title_full_unstemmed Inhibition of activated NR2B gene- and caspase-3 protein-expression by glutathione following traumatic brain injury in a rat model
title_short Inhibition of activated NR2B gene- and caspase-3 protein-expression by glutathione following traumatic brain injury in a rat model
title_sort inhibition of activated nr2b gene- and caspase-3 protein-expression by glutathione following traumatic brain injury in a rat model
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3277073/
https://www.ncbi.nlm.nih.gov/pubmed/22347327
http://dx.doi.org/10.4103/1793-5482.92160
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