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Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media

This study was aimed to determine the neuroprotective influence of Stellaria media in terms of restoring normal state of the rat’s hippocampus and cortex after oxidative insult caused by in vitro ischemia and reperfusion. Cell viability and membrane integrity were assessed using MTT and lactate dehy...

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Autores principales: Ahmad, Wasim, Ahmad, Mushtaq, Umar Khayam Sahibzada, Muhammad, Khusro, Ameer, Emran, Talha Bin, Muhammedali Alnasrawi, Abeer, Alkahtani, Jawaher, Elshikh, Mohamed S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8913427/
https://www.ncbi.nlm.nih.gov/pubmed/35280571
http://dx.doi.org/10.1016/j.sjbs.2021.10.033
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author Ahmad, Wasim
Ahmad, Mushtaq
Umar Khayam Sahibzada, Muhammad
Khusro, Ameer
Emran, Talha Bin
Muhammedali Alnasrawi, Abeer
Alkahtani, Jawaher
Elshikh, Mohamed S.
author_facet Ahmad, Wasim
Ahmad, Mushtaq
Umar Khayam Sahibzada, Muhammad
Khusro, Ameer
Emran, Talha Bin
Muhammedali Alnasrawi, Abeer
Alkahtani, Jawaher
Elshikh, Mohamed S.
author_sort Ahmad, Wasim
collection PubMed
description This study was aimed to determine the neuroprotective influence of Stellaria media in terms of restoring normal state of the rat’s hippocampus and cortex after oxidative insult caused by in vitro ischemia and reperfusion. Cell viability and membrane integrity were assessed using MTT and lactate dehydrogenase (LDH) assay, respectively. Ischemic insult was introduced in the rat brain’s hippocampal and cortical slivers by exposing oxygen and glucose deficiency (OGD) for 2 h, followed by 1 h of re-perfusion. Cellular oxidative stress levels were quantified by incorporating 2ʹ,7ʹ-dichlorofluorescein diacetate fluorescent probes. Additionally, the lipid peroxidation was assessed using TBARS assay. Findings revealed significant neuroprotection against OGD-induced mitochondrial impairment at 40 µg/mL of S. media in rat’s hippocampal and cortical slices. The LDH levels were decreased significantly (P < 0.001) during pre-incubation and reoxygenation periods using varied concentrations of S. media extract. Cellular oxidative stress levels results showed significant (P < 0.001) reduction in dichlorofluorescein fluorescence in slices homogenate of hippocampus and cortex using S. media extract. The lipid peroxidation assay results showed decreased (P < 0.01) levels of malondialdehyde in liver tissues of treated rats treated (200 mg/kg body weight) when compared to the ischemic animal. In summary, findings clearly indicated the neuroprotective effects of extract against in vitro ischemia in brain hippocampal and cortex slivers. S. media could undoubtedly be utilized as a healing agent in preventing neuronal cells’ loss during is chemic-reperfusion process.
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spelling pubmed-89134272022-03-12 Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media Ahmad, Wasim Ahmad, Mushtaq Umar Khayam Sahibzada, Muhammad Khusro, Ameer Emran, Talha Bin Muhammedali Alnasrawi, Abeer Alkahtani, Jawaher Elshikh, Mohamed S. Saudi J Biol Sci Original Article This study was aimed to determine the neuroprotective influence of Stellaria media in terms of restoring normal state of the rat’s hippocampus and cortex after oxidative insult caused by in vitro ischemia and reperfusion. Cell viability and membrane integrity were assessed using MTT and lactate dehydrogenase (LDH) assay, respectively. Ischemic insult was introduced in the rat brain’s hippocampal and cortical slivers by exposing oxygen and glucose deficiency (OGD) for 2 h, followed by 1 h of re-perfusion. Cellular oxidative stress levels were quantified by incorporating 2ʹ,7ʹ-dichlorofluorescein diacetate fluorescent probes. Additionally, the lipid peroxidation was assessed using TBARS assay. Findings revealed significant neuroprotection against OGD-induced mitochondrial impairment at 40 µg/mL of S. media in rat’s hippocampal and cortical slices. The LDH levels were decreased significantly (P < 0.001) during pre-incubation and reoxygenation periods using varied concentrations of S. media extract. Cellular oxidative stress levels results showed significant (P < 0.001) reduction in dichlorofluorescein fluorescence in slices homogenate of hippocampus and cortex using S. media extract. The lipid peroxidation assay results showed decreased (P < 0.01) levels of malondialdehyde in liver tissues of treated rats treated (200 mg/kg body weight) when compared to the ischemic animal. In summary, findings clearly indicated the neuroprotective effects of extract against in vitro ischemia in brain hippocampal and cortex slivers. S. media could undoubtedly be utilized as a healing agent in preventing neuronal cells’ loss during is chemic-reperfusion process. Elsevier 2022-03 2021-10-22 /pmc/articles/PMC8913427/ /pubmed/35280571 http://dx.doi.org/10.1016/j.sjbs.2021.10.033 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Ahmad, Wasim
Ahmad, Mushtaq
Umar Khayam Sahibzada, Muhammad
Khusro, Ameer
Emran, Talha Bin
Muhammedali Alnasrawi, Abeer
Alkahtani, Jawaher
Elshikh, Mohamed S.
Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media
title Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media
title_full Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media
title_fullStr Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media
title_full_unstemmed Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media
title_short Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media
title_sort lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using stellaria media
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8913427/
https://www.ncbi.nlm.nih.gov/pubmed/35280571
http://dx.doi.org/10.1016/j.sjbs.2021.10.033
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