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Phytochemical investigation, cytotoxicity and free radical scavenging activities of non-polar fractions of Acalypha hispida (leaves and twigs)

Free radicals are involved in the process of lipid peroxidation and play a cardinal role in numerous chronic diseases like cancer, coronary heart disease and ageing. Thus the ability to scavenge free radicals in order to minimize oxidative damage to living cells is very important. The hexane extract...

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Autores principales: Onocha, Patricia A, Oloyede, G.K., Afolabi, Q.O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Leibniz Research Centre for Working Environment and Human Factors 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5109007/
https://www.ncbi.nlm.nih.gov/pubmed/27857659
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author Onocha, Patricia A
Oloyede, G.K.
Afolabi, Q.O.
author_facet Onocha, Patricia A
Oloyede, G.K.
Afolabi, Q.O.
author_sort Onocha, Patricia A
collection PubMed
description Free radicals are involved in the process of lipid peroxidation and play a cardinal role in numerous chronic diseases like cancer, coronary heart disease and ageing. Thus the ability to scavenge free radicals in order to minimize oxidative damage to living cells is very important. The hexane extract of Acalypha hispida (Burn F.) was screened for phytochemical constituents and was found to contain flavonoids, carbohydrates, phenols and alkaloids. Fractions obtained from chromatographic separation were screened for free radical scavenging activities using 2,2-diphenyl-1-picrylhydrazyl radical (DPPH) and hydrogen peroxide. Out of the sixteen pooled fractions (S(1)-S(16)) screened, compounds S(10) (91.8 %), S(11) (93.8 %), S(14) (92.5 %) and S(15) (91.4 %) at a concentration of 0.1 mg/ml had significant antioxidant activities when compared to the known antioxidant ascorbic acid (90.9 %). However, in the analysis using hydrogen peroxide, S(1) (99.5 %), S(9) (99.2 %), S(10) (95.4 %),S(11) (95.8 %) and S(15) (95.6 %) gave better activity than ascorbic acid (94.8 %), while only S(1) and S(9) were more effective than butylated hydroxylanisole (98.9 %) and α-Tocopherol (99.1 %) at the same concentration. The cytotoxicity analysis using the Brine Shrimp lethality test gave LC(50 )values greater than 1000 μg/ml for some of the fractions indicating very low level of toxicity. The better scavenging activity of A. hispida could be linked to the presence of secondary plant products like flavonoids and phenols, which have the ability to scavenge hydroxyl radicals, superoxide anions and lipid peroxy radicals.
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spelling pubmed-51090072016-11-17 Phytochemical investigation, cytotoxicity and free radical scavenging activities of non-polar fractions of Acalypha hispida (leaves and twigs) Onocha, Patricia A Oloyede, G.K. Afolabi, Q.O. EXCLI J Original Article Free radicals are involved in the process of lipid peroxidation and play a cardinal role in numerous chronic diseases like cancer, coronary heart disease and ageing. Thus the ability to scavenge free radicals in order to minimize oxidative damage to living cells is very important. The hexane extract of Acalypha hispida (Burn F.) was screened for phytochemical constituents and was found to contain flavonoids, carbohydrates, phenols and alkaloids. Fractions obtained from chromatographic separation were screened for free radical scavenging activities using 2,2-diphenyl-1-picrylhydrazyl radical (DPPH) and hydrogen peroxide. Out of the sixteen pooled fractions (S(1)-S(16)) screened, compounds S(10) (91.8 %), S(11) (93.8 %), S(14) (92.5 %) and S(15) (91.4 %) at a concentration of 0.1 mg/ml had significant antioxidant activities when compared to the known antioxidant ascorbic acid (90.9 %). However, in the analysis using hydrogen peroxide, S(1) (99.5 %), S(9) (99.2 %), S(10) (95.4 %),S(11) (95.8 %) and S(15) (95.6 %) gave better activity than ascorbic acid (94.8 %), while only S(1) and S(9) were more effective than butylated hydroxylanisole (98.9 %) and α-Tocopherol (99.1 %) at the same concentration. The cytotoxicity analysis using the Brine Shrimp lethality test gave LC(50 )values greater than 1000 μg/ml for some of the fractions indicating very low level of toxicity. The better scavenging activity of A. hispida could be linked to the presence of secondary plant products like flavonoids and phenols, which have the ability to scavenge hydroxyl radicals, superoxide anions and lipid peroxy radicals. Leibniz Research Centre for Working Environment and Human Factors 2011-01-24 /pmc/articles/PMC5109007/ /pubmed/27857659 Text en Copyright © 2011 Onocha et al. http://www.excli.de/documents/assignment_of_rights.pdf This is an Open Access article distributed under the following Assignment of Rights http://www.excli.de/documents/assignment_of_rights.pdf. You are free to copy, distribute and transmit the work, provided the original author and source are credited.
spellingShingle Original Article
Onocha, Patricia A
Oloyede, G.K.
Afolabi, Q.O.
Phytochemical investigation, cytotoxicity and free radical scavenging activities of non-polar fractions of Acalypha hispida (leaves and twigs)
title Phytochemical investigation, cytotoxicity and free radical scavenging activities of non-polar fractions of Acalypha hispida (leaves and twigs)
title_full Phytochemical investigation, cytotoxicity and free radical scavenging activities of non-polar fractions of Acalypha hispida (leaves and twigs)
title_fullStr Phytochemical investigation, cytotoxicity and free radical scavenging activities of non-polar fractions of Acalypha hispida (leaves and twigs)
title_full_unstemmed Phytochemical investigation, cytotoxicity and free radical scavenging activities of non-polar fractions of Acalypha hispida (leaves and twigs)
title_short Phytochemical investigation, cytotoxicity and free radical scavenging activities of non-polar fractions of Acalypha hispida (leaves and twigs)
title_sort phytochemical investigation, cytotoxicity and free radical scavenging activities of non-polar fractions of acalypha hispida (leaves and twigs)
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5109007/
https://www.ncbi.nlm.nih.gov/pubmed/27857659
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