Rhinacanthus nasutus Protects Cultured Neuronal Cells against Hypoxia Induced Cell Death

Rhinacanthus nasutus (L.) Kurz (Acanthaceae) is an herb native to Thailand and Southeast Asia, known for its antioxidant properties. Hypoxia leads to an increase in reactive oxygen species in cells and is a leading cause of neuronal damage. Cell death caused by hypoxia has been linked with a number...

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Main Authors: James M. Brimson, Tewin Tencomnao
Format: Article
Language:English
Published: MDPI AG 2011-07-01
Series:Molecules
Subjects:
Online Access:http://www.mdpi.com/1420-3049/16/8/6322/
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spelling doaj-bd0ebfcbe77d44f8bcb214a5d009808d2020-11-24T23:12:05ZengMDPI AGMolecules1420-30492011-07-011686322633810.3390/molecules16086322Rhinacanthus nasutus Protects Cultured Neuronal Cells against Hypoxia Induced Cell DeathJames M. BrimsonTewin TencomnaoRhinacanthus nasutus (L.) Kurz (Acanthaceae) is an herb native to Thailand and Southeast Asia, known for its antioxidant properties. Hypoxia leads to an increase in reactive oxygen species in cells and is a leading cause of neuronal damage. Cell death caused by hypoxia has been linked with a number of neurodegenerative diseases including some forms of dementia and stroke, as well as the build up of reactive oxygen species which can lead to diseases such as Huntington’s disease, Parkinson’s disease and Alzeheimer’s disease. In this study we used an airtight culture container and the Mitsubishi Gas Company anaeropack along with the MTT assay, LDH assay and the trypan blue exlusion assay to show that 1 and 10 µg mL−1 root extract of R. nasutus is able to significantly prevent the death of HT-22 cells subjected to hypoxic conditions, and 0.1 to 10 µg mL−1 had no toxic effect on HT-22 under normal conditions, whereas 100 µg mL−1 reduced HT-22 cell proliferation. We also used H2DCFDA staining to show R. nasutus can reduce reactive oxygen species production in HT-22 cells.http://www.mdpi.com/1420-3049/16/8/6322/Rhinacanthus nasutashypoxiaanaeropackHT-22antioxidant
collection DOAJ
language English
format Article
sources DOAJ
author James M. Brimson
Tewin Tencomnao
spellingShingle James M. Brimson
Tewin Tencomnao
Rhinacanthus nasutus Protects Cultured Neuronal Cells against Hypoxia Induced Cell Death
Molecules
Rhinacanthus nasutas
hypoxia
anaeropack
HT-22
antioxidant
author_facet James M. Brimson
Tewin Tencomnao
author_sort James M. Brimson
title Rhinacanthus nasutus Protects Cultured Neuronal Cells against Hypoxia Induced Cell Death
title_short Rhinacanthus nasutus Protects Cultured Neuronal Cells against Hypoxia Induced Cell Death
title_full Rhinacanthus nasutus Protects Cultured Neuronal Cells against Hypoxia Induced Cell Death
title_fullStr Rhinacanthus nasutus Protects Cultured Neuronal Cells against Hypoxia Induced Cell Death
title_full_unstemmed Rhinacanthus nasutus Protects Cultured Neuronal Cells against Hypoxia Induced Cell Death
title_sort rhinacanthus nasutus protects cultured neuronal cells against hypoxia induced cell death
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2011-07-01
description Rhinacanthus nasutus (L.) Kurz (Acanthaceae) is an herb native to Thailand and Southeast Asia, known for its antioxidant properties. Hypoxia leads to an increase in reactive oxygen species in cells and is a leading cause of neuronal damage. Cell death caused by hypoxia has been linked with a number of neurodegenerative diseases including some forms of dementia and stroke, as well as the build up of reactive oxygen species which can lead to diseases such as Huntington’s disease, Parkinson’s disease and Alzeheimer’s disease. In this study we used an airtight culture container and the Mitsubishi Gas Company anaeropack along with the MTT assay, LDH assay and the trypan blue exlusion assay to show that 1 and 10 µg mL−1 root extract of R. nasutus is able to significantly prevent the death of HT-22 cells subjected to hypoxic conditions, and 0.1 to 10 µg mL−1 had no toxic effect on HT-22 under normal conditions, whereas 100 µg mL−1 reduced HT-22 cell proliferation. We also used H2DCFDA staining to show R. nasutus can reduce reactive oxygen species production in HT-22 cells.
topic Rhinacanthus nasutas
hypoxia
anaeropack
HT-22
antioxidant
url http://www.mdpi.com/1420-3049/16/8/6322/
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