Cytotoxic, kinetics of inhibition of carbohydrate-hydrolysing enzymes and oxidative stress mitigation by flavonoids roots extract of Dicoma anomala (Sond.)

Objective: To investigate the free radical scavenging, antidiabetic, kinetics and cytotoxic potentials of flavonoids extract of Dicoma anomala root by using standard methods. Methods: Antioxidant activity of the flavonoids was investigated at scavenging free radicals such as 1,1- diphenyl-2-picrylhy...

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Main Authors: Fatai Oladunni Balogun, Anofi Omotayo Tom Ashafa
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2018-01-01
Series:Asian Pacific Journal of Tropical Medicine
Subjects:
Online Access:http://www.apjtm.org/article.asp?issn=1995-7645;year=2018;volume=11;issue=1;spage=24;epage=31;aulast=Balogun
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spelling doaj-15f29e675dda4ef3bb1a6f0524387a142020-11-25T02:28:24ZengWolters Kluwer Medknow PublicationsAsian Pacific Journal of Tropical Medicine2352-41462018-01-01111243110.4103/1995-7645.223530Cytotoxic, kinetics of inhibition of carbohydrate-hydrolysing enzymes and oxidative stress mitigation by flavonoids roots extract of Dicoma anomala (Sond.)Fatai Oladunni BalogunAnofi Omotayo Tom AshafaObjective: To investigate the free radical scavenging, antidiabetic, kinetics and cytotoxic potentials of flavonoids extract of Dicoma anomala root by using standard methods. Methods: Antioxidant activity of the flavonoids was investigated at scavenging free radicals such as 1,1- diphenyl-2-picrylhydrazyl, nitric oxide, hydroxyl radical, reducing capabilities, 2,2-azino- bis (3-ethylbenzothiazoline-6) sulfonic acid as well as metal chelating capability at different concentrations (0.125-1.000 mg/mL) while the antidiabetic activity was evaluated via the inhibition and kinetics of carbohydrate digestive enzymes including, alpha glucosidase, sucrase and maltase. Brine shrimp lethality assay was also employed to examine the cytotoxic effects of the extract by using different range of concentrations (0.125-2.000 mg/mL). Results: The study revealed the best antioxidant activity of the extract in 1,1-diphenyl-2-picrylhydrazyl, 2,2-azino-bis (3-ethylbenzothiazoline-6) sulfonic acid and nitric oxide having IC50 values of (386.90±4.91), (736.00±38.12), (629.30±9.62) μg/mL respectively compared with quercetin (standard) with IC50 [(522.20±12.38), (1 021.00±15.61) and (1 075.00±29.35) μg/mL] respective values while it was insignificantly (P>0.05) at par with quercetin for reducing power. Similarly, the extract exhibited a moderate inhibition of alpha glucosidase (43.1%), sucrase (33.4%) and maltase (29.9%) activities which were significantly (P<0.05) better than acarbose (18.4%, 12.7% and 24.9% respectively) although acarbose (46.1%) inhibited the higher activity of alpha amylase than the extract (13.7%). The kinetics of mode of inhibition of alpha amylase, alpha glucosidase, sucrase and maltase by flavonoids extract of Dicoma anomala revealed an uncompetitive, non-competitive, competitive and non-competitive inhibition respectively. The result of the lethality assay showed a potent cytotoxic effect of the flavonoids with LC50 value 0.510 mg/mL. Conclusions: The results obtained from this study are suggestive of the antioxidative, antidiabetic and cytotoxic potentials of flavonoids root extract of Dicoma anomala.http://www.apjtm.org/article.asp?issn=1995-7645;year=2018;volume=11;issue=1;spage=24;epage=31;aulast=Balogunantioxidativeantihyperglycaemiccytotoxicdicoma anomalaflavonoidskinetics
collection DOAJ
language English
format Article
sources DOAJ
author Fatai Oladunni Balogun
Anofi Omotayo Tom Ashafa
spellingShingle Fatai Oladunni Balogun
Anofi Omotayo Tom Ashafa
Cytotoxic, kinetics of inhibition of carbohydrate-hydrolysing enzymes and oxidative stress mitigation by flavonoids roots extract of Dicoma anomala (Sond.)
Asian Pacific Journal of Tropical Medicine
antioxidative
antihyperglycaemic
cytotoxic
dicoma anomala
flavonoids
kinetics
author_facet Fatai Oladunni Balogun
Anofi Omotayo Tom Ashafa
author_sort Fatai Oladunni Balogun
title Cytotoxic, kinetics of inhibition of carbohydrate-hydrolysing enzymes and oxidative stress mitigation by flavonoids roots extract of Dicoma anomala (Sond.)
title_short Cytotoxic, kinetics of inhibition of carbohydrate-hydrolysing enzymes and oxidative stress mitigation by flavonoids roots extract of Dicoma anomala (Sond.)
title_full Cytotoxic, kinetics of inhibition of carbohydrate-hydrolysing enzymes and oxidative stress mitigation by flavonoids roots extract of Dicoma anomala (Sond.)
title_fullStr Cytotoxic, kinetics of inhibition of carbohydrate-hydrolysing enzymes and oxidative stress mitigation by flavonoids roots extract of Dicoma anomala (Sond.)
title_full_unstemmed Cytotoxic, kinetics of inhibition of carbohydrate-hydrolysing enzymes and oxidative stress mitigation by flavonoids roots extract of Dicoma anomala (Sond.)
title_sort cytotoxic, kinetics of inhibition of carbohydrate-hydrolysing enzymes and oxidative stress mitigation by flavonoids roots extract of dicoma anomala (sond.)
publisher Wolters Kluwer Medknow Publications
series Asian Pacific Journal of Tropical Medicine
issn 2352-4146
publishDate 2018-01-01
description Objective: To investigate the free radical scavenging, antidiabetic, kinetics and cytotoxic potentials of flavonoids extract of Dicoma anomala root by using standard methods. Methods: Antioxidant activity of the flavonoids was investigated at scavenging free radicals such as 1,1- diphenyl-2-picrylhydrazyl, nitric oxide, hydroxyl radical, reducing capabilities, 2,2-azino- bis (3-ethylbenzothiazoline-6) sulfonic acid as well as metal chelating capability at different concentrations (0.125-1.000 mg/mL) while the antidiabetic activity was evaluated via the inhibition and kinetics of carbohydrate digestive enzymes including, alpha glucosidase, sucrase and maltase. Brine shrimp lethality assay was also employed to examine the cytotoxic effects of the extract by using different range of concentrations (0.125-2.000 mg/mL). Results: The study revealed the best antioxidant activity of the extract in 1,1-diphenyl-2-picrylhydrazyl, 2,2-azino-bis (3-ethylbenzothiazoline-6) sulfonic acid and nitric oxide having IC50 values of (386.90±4.91), (736.00±38.12), (629.30±9.62) μg/mL respectively compared with quercetin (standard) with IC50 [(522.20±12.38), (1 021.00±15.61) and (1 075.00±29.35) μg/mL] respective values while it was insignificantly (P>0.05) at par with quercetin for reducing power. Similarly, the extract exhibited a moderate inhibition of alpha glucosidase (43.1%), sucrase (33.4%) and maltase (29.9%) activities which were significantly (P<0.05) better than acarbose (18.4%, 12.7% and 24.9% respectively) although acarbose (46.1%) inhibited the higher activity of alpha amylase than the extract (13.7%). The kinetics of mode of inhibition of alpha amylase, alpha glucosidase, sucrase and maltase by flavonoids extract of Dicoma anomala revealed an uncompetitive, non-competitive, competitive and non-competitive inhibition respectively. The result of the lethality assay showed a potent cytotoxic effect of the flavonoids with LC50 value 0.510 mg/mL. Conclusions: The results obtained from this study are suggestive of the antioxidative, antidiabetic and cytotoxic potentials of flavonoids root extract of Dicoma anomala.
topic antioxidative
antihyperglycaemic
cytotoxic
dicoma anomala
flavonoids
kinetics
url http://www.apjtm.org/article.asp?issn=1995-7645;year=2018;volume=11;issue=1;spage=24;epage=31;aulast=Balogun
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AT anofiomotayotomashafa cytotoxickineticsofinhibitionofcarbohydratehydrolysingenzymesandoxidativestressmitigationbyflavonoidsrootsextractofdicomaanomalasond
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