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Biological Activities of Extracts fromCornus kousaFruit
Author(s) -
EunHo Lee,
SeonHo Lee,
YoungJe Cho
Publication year - 2015
Publication title -
journal of applied biological chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.229
H-Index - 18
eISSN - 2234-7941
pISSN - 1976-0442
DOI - 10.3839/jabc.2015.050
Subject(s) - chemistry , ethanol , antioxidant , food science , thiobarbituric acid , xanthine oxidase , biochemistry , enzyme , lipid peroxidation
The extracted phenolic compounds from Cornus kousa fruit for biological activities as functional resources were examined. The phenolic compounds which were extracted with water and 40% ethanol from Cornus kousa fruit were 7.04±0.27 and 4.47±0.18 mg/g, respectively. The 1,1-diphenyl-2-picrylhydrazyl free radical scavenging activity of water and ethanol extracts were 84% and 86% at 50 µg/mL phenolics, respectively. The 2,2u0027- Azinobis-(3-ethylbenzothiazoline-6-sulfonic acid radical decolorization activity of water and ethanol extracts were 84 and 95% at 100 µg/ mL phenolics, respectively. Antioxidant protection factor in water and ethanol extracts at 50 µg/mL phenolics were 1.93 and 1.82 PF, respectively. Thiobarbituric acid reactive substance were 69% in water extracts and 89% in ethanol extracts at 150 µg/mL phenolics. The inhibition activity on xanthine oxidase in water and ethanol extracts was 34 and 60%, respectively. The inhibition activity on α-glucosidase was 29% in water extracts and 87% in ethanol extracts. The tyrosinase inhibitory activity was 19% in ethanol extracts. The collagenase inhibition activity of anti-wrinkle effect showed an excellent wrinkle improvement effect as 53% in water extracts and 77% in ethanol extracts at 200 µg/mL phenolics. The hyaluronidase inhibition activity as antiinflammation effect of water extracts was confirmed to 34% of inhibition at 200 µg/mL phenolic. The results can be expected extracts from Cornus kousa fruit to use as functional resource for antioxidant, antigout, inhibitor of carbohydrate degradation, antiwrinkle activity and antiinflammation activity.

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