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Data on dose-dependent cytotoxicity of rotenone and neuroprotection conferred by Yashtimadhu (Glycyrrhiza glabra L.) in an in vitro Parkinson's disease model

The data described in this article presents the toxicity of rotenone and the neuroprotective effect of Yashtimadhu choorna (powder) in an in vitro Parkinson's disease model [1]. Yashtimadhu choorna is prepared from the roots of Glycyrrhiza glabra L., commonly known as licorice/ liquorice. The e...

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Autores principales: Karthikkeyan, Gayathree, Prabhu, Ashwini, Pervaje, Ravishankar, Pervaje, Sameera Krishna, Modi, Prashant Kumar, Prasad, Thottethodi Subrahmanya Keshava
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8601963/
https://www.ncbi.nlm.nih.gov/pubmed/34820486
http://dx.doi.org/10.1016/j.dib.2021.107535
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author Karthikkeyan, Gayathree
Prabhu, Ashwini
Pervaje, Ravishankar
Pervaje, Sameera Krishna
Modi, Prashant Kumar
Prasad, Thottethodi Subrahmanya Keshava
author_facet Karthikkeyan, Gayathree
Prabhu, Ashwini
Pervaje, Ravishankar
Pervaje, Sameera Krishna
Modi, Prashant Kumar
Prasad, Thottethodi Subrahmanya Keshava
author_sort Karthikkeyan, Gayathree
collection PubMed
description The data described in this article presents the toxicity of rotenone and the neuroprotective effect of Yashtimadhu choorna (powder) in an in vitro Parkinson's disease model [1]. Yashtimadhu choorna is prepared from the roots of Glycyrrhiza glabra L., commonly known as licorice/ liquorice. The effects of rotenone and Yashtimadhu was assessed using cellular and molecular assays such as cell cytotoxicity assay, live-dead cell staining assay, cell cycle analysis, and western blotting. Protein-protein interaction was studied using ANAT plug-in in Cytoscape. Rotenone displayed time and dose-dependent toxicity, as evidenced by cell cytotoxicity assay and live-dead cell staining assay. Yashtimadhu showed no toxicity and prevented rotenone-induced toxicity. Rotenone and Yashtimadhu displayed differential control on the cell cycle. The Protein-interaction network showed the proteins interacting with ERK-1/2 and the pathways regulated by these interactions. The pathways regulated were primarily involved in cellular oxidative stress and apoptosis response. The data described here will enable the extent of cellular toxicity as a result of rotenone treatment and the neuroprotection conferred by Yashtimadhu choorna. This will enable understanding and exploring the effect of traditional and complementary medicine and aiding the identification of molecular targets to confer neuroprotection in Parkinson's disease.
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spelling pubmed-86019632021-11-23 Data on dose-dependent cytotoxicity of rotenone and neuroprotection conferred by Yashtimadhu (Glycyrrhiza glabra L.) in an in vitro Parkinson's disease model Karthikkeyan, Gayathree Prabhu, Ashwini Pervaje, Ravishankar Pervaje, Sameera Krishna Modi, Prashant Kumar Prasad, Thottethodi Subrahmanya Keshava Data Brief Data Article The data described in this article presents the toxicity of rotenone and the neuroprotective effect of Yashtimadhu choorna (powder) in an in vitro Parkinson's disease model [1]. Yashtimadhu choorna is prepared from the roots of Glycyrrhiza glabra L., commonly known as licorice/ liquorice. The effects of rotenone and Yashtimadhu was assessed using cellular and molecular assays such as cell cytotoxicity assay, live-dead cell staining assay, cell cycle analysis, and western blotting. Protein-protein interaction was studied using ANAT plug-in in Cytoscape. Rotenone displayed time and dose-dependent toxicity, as evidenced by cell cytotoxicity assay and live-dead cell staining assay. Yashtimadhu showed no toxicity and prevented rotenone-induced toxicity. Rotenone and Yashtimadhu displayed differential control on the cell cycle. The Protein-interaction network showed the proteins interacting with ERK-1/2 and the pathways regulated by these interactions. The pathways regulated were primarily involved in cellular oxidative stress and apoptosis response. The data described here will enable the extent of cellular toxicity as a result of rotenone treatment and the neuroprotection conferred by Yashtimadhu choorna. This will enable understanding and exploring the effect of traditional and complementary medicine and aiding the identification of molecular targets to confer neuroprotection in Parkinson's disease. Elsevier 2021-11-06 /pmc/articles/PMC8601963/ /pubmed/34820486 http://dx.doi.org/10.1016/j.dib.2021.107535 Text en © 2021 Published by Elsevier Inc. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Data Article
Karthikkeyan, Gayathree
Prabhu, Ashwini
Pervaje, Ravishankar
Pervaje, Sameera Krishna
Modi, Prashant Kumar
Prasad, Thottethodi Subrahmanya Keshava
Data on dose-dependent cytotoxicity of rotenone and neuroprotection conferred by Yashtimadhu (Glycyrrhiza glabra L.) in an in vitro Parkinson's disease model
title Data on dose-dependent cytotoxicity of rotenone and neuroprotection conferred by Yashtimadhu (Glycyrrhiza glabra L.) in an in vitro Parkinson's disease model
title_full Data on dose-dependent cytotoxicity of rotenone and neuroprotection conferred by Yashtimadhu (Glycyrrhiza glabra L.) in an in vitro Parkinson's disease model
title_fullStr Data on dose-dependent cytotoxicity of rotenone and neuroprotection conferred by Yashtimadhu (Glycyrrhiza glabra L.) in an in vitro Parkinson's disease model
title_full_unstemmed Data on dose-dependent cytotoxicity of rotenone and neuroprotection conferred by Yashtimadhu (Glycyrrhiza glabra L.) in an in vitro Parkinson's disease model
title_short Data on dose-dependent cytotoxicity of rotenone and neuroprotection conferred by Yashtimadhu (Glycyrrhiza glabra L.) in an in vitro Parkinson's disease model
title_sort data on dose-dependent cytotoxicity of rotenone and neuroprotection conferred by yashtimadhu (glycyrrhiza glabra l.) in an in vitro parkinson's disease model
topic Data Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8601963/
https://www.ncbi.nlm.nih.gov/pubmed/34820486
http://dx.doi.org/10.1016/j.dib.2021.107535
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