Phytochemical Composition, Antioxidant Activity, and the Effect of the Aqueous Extract of Coffee (Coffea arabica L.) Bean Residual Press Cake on the Skin Wound Healing

The world coffee consumption has been growing for its appreciated taste and its beneficial effects on health. The residual biomass of coffee, originated in the food industry after oil extraction from coffee beans, called coffee beans residual press cake, has attracted interest as a source of compoun...

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Main Authors: Regina Celis Lopes Affonso, Ana Paula Lorenzen Voytena, Simone Fanan, Heloísa Pitz, Daniela Sousa Coelho, Ana Luiza Horstmann, Aline Pereira, Virgílio Gavicho Uarrota, Maria Clara Hillmann, Lucas Andre Calbusch Varela, Rosa Maria Ribeiro-do-Valle, Marcelo Maraschin
Format: Article
Language:English
Published: Hindawi Limited 2016-01-01
Series:Oxidative Medicine and Cellular Longevity
Online Access:http://dx.doi.org/10.1155/2016/1923754
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spelling doaj-824ecb503a6e486f96f420de8b0aa3ea2020-11-24T22:20:10ZengHindawi LimitedOxidative Medicine and Cellular Longevity1942-09001942-09942016-01-01201610.1155/2016/19237541923754Phytochemical Composition, Antioxidant Activity, and the Effect of the Aqueous Extract of Coffee (Coffea arabica L.) Bean Residual Press Cake on the Skin Wound HealingRegina Celis Lopes Affonso0Ana Paula Lorenzen Voytena1Simone Fanan2Heloísa Pitz3Daniela Sousa Coelho4Ana Luiza Horstmann5Aline Pereira6Virgílio Gavicho Uarrota7Maria Clara Hillmann8Lucas Andre Calbusch Varela9Rosa Maria Ribeiro-do-Valle10Marcelo Maraschin11Plant Morphogenesis and Biochemistry Laboratory, Federal University of Santa Catarina, 1346 Admar Gonzaga Road, 88048-000 Florianópolis, SC, BrazilPlant Morphogenesis and Biochemistry Laboratory, Federal University of Santa Catarina, 1346 Admar Gonzaga Road, 88048-000 Florianópolis, SC, BrazilPlant Morphogenesis and Biochemistry Laboratory, Federal University of Santa Catarina, 1346 Admar Gonzaga Road, 88048-000 Florianópolis, SC, BrazilPlant Morphogenesis and Biochemistry Laboratory, Federal University of Santa Catarina, 1346 Admar Gonzaga Road, 88048-000 Florianópolis, SC, BrazilPlant Morphogenesis and Biochemistry Laboratory, Federal University of Santa Catarina, 1346 Admar Gonzaga Road, 88048-000 Florianópolis, SC, BrazilPlant Morphogenesis and Biochemistry Laboratory, Federal University of Santa Catarina, 1346 Admar Gonzaga Road, 88048-000 Florianópolis, SC, BrazilPlant Morphogenesis and Biochemistry Laboratory, Federal University of Santa Catarina, 1346 Admar Gonzaga Road, 88048-000 Florianópolis, SC, BrazilPlant Morphogenesis and Biochemistry Laboratory, Federal University of Santa Catarina, 1346 Admar Gonzaga Road, 88048-000 Florianópolis, SC, BrazilPlant Morphogenesis and Biochemistry Laboratory, Federal University of Santa Catarina, 1346 Admar Gonzaga Road, 88048-000 Florianópolis, SC, BrazilPlant Morphogenesis and Biochemistry Laboratory, Federal University of Santa Catarina, 1346 Admar Gonzaga Road, 88048-000 Florianópolis, SC, BrazilPlant Morphogenesis and Biochemistry Laboratory, Federal University of Santa Catarina, 1346 Admar Gonzaga Road, 88048-000 Florianópolis, SC, BrazilPlant Morphogenesis and Biochemistry Laboratory, Federal University of Santa Catarina, 1346 Admar Gonzaga Road, 88048-000 Florianópolis, SC, BrazilThe world coffee consumption has been growing for its appreciated taste and its beneficial effects on health. The residual biomass of coffee, originated in the food industry after oil extraction from coffee beans, called coffee beans residual press cake, has attracted interest as a source of compounds with antioxidant activity. This study investigated the chemical composition of aqueous extracts of coffee beans residual press cake (AE), their antioxidant activity, and the effect of topical application on the skin wound healing, in animal model, of hydrogels containing the AE, chlorogenic acid (CGA), allantoin (positive control), and carbopol (negative control). The treatments’ performance was compared by measuring the reduction of the wound area, with superior result (p<0.05) for the green coffee AE (78.20%) with respect to roasted coffee AE (53.71%), allantoin (70.83%), and carbopol (23.56%). CGA hydrogels reduced significantly the wound area size on the inflammatory phase, which may be associated with the well known antioxidant and anti-inflammatory actions of that compound. The topic use of the coffee AE studied improved the skin wound healing and points to an interesting biotechnological application of the coffee bean residual press cake.http://dx.doi.org/10.1155/2016/1923754
collection DOAJ
language English
format Article
sources DOAJ
author Regina Celis Lopes Affonso
Ana Paula Lorenzen Voytena
Simone Fanan
Heloísa Pitz
Daniela Sousa Coelho
Ana Luiza Horstmann
Aline Pereira
Virgílio Gavicho Uarrota
Maria Clara Hillmann
Lucas Andre Calbusch Varela
Rosa Maria Ribeiro-do-Valle
Marcelo Maraschin
spellingShingle Regina Celis Lopes Affonso
Ana Paula Lorenzen Voytena
Simone Fanan
Heloísa Pitz
Daniela Sousa Coelho
Ana Luiza Horstmann
Aline Pereira
Virgílio Gavicho Uarrota
Maria Clara Hillmann
Lucas Andre Calbusch Varela
Rosa Maria Ribeiro-do-Valle
Marcelo Maraschin
Phytochemical Composition, Antioxidant Activity, and the Effect of the Aqueous Extract of Coffee (Coffea arabica L.) Bean Residual Press Cake on the Skin Wound Healing
Oxidative Medicine and Cellular Longevity
author_facet Regina Celis Lopes Affonso
Ana Paula Lorenzen Voytena
Simone Fanan
Heloísa Pitz
Daniela Sousa Coelho
Ana Luiza Horstmann
Aline Pereira
Virgílio Gavicho Uarrota
Maria Clara Hillmann
Lucas Andre Calbusch Varela
Rosa Maria Ribeiro-do-Valle
Marcelo Maraschin
author_sort Regina Celis Lopes Affonso
title Phytochemical Composition, Antioxidant Activity, and the Effect of the Aqueous Extract of Coffee (Coffea arabica L.) Bean Residual Press Cake on the Skin Wound Healing
title_short Phytochemical Composition, Antioxidant Activity, and the Effect of the Aqueous Extract of Coffee (Coffea arabica L.) Bean Residual Press Cake on the Skin Wound Healing
title_full Phytochemical Composition, Antioxidant Activity, and the Effect of the Aqueous Extract of Coffee (Coffea arabica L.) Bean Residual Press Cake on the Skin Wound Healing
title_fullStr Phytochemical Composition, Antioxidant Activity, and the Effect of the Aqueous Extract of Coffee (Coffea arabica L.) Bean Residual Press Cake on the Skin Wound Healing
title_full_unstemmed Phytochemical Composition, Antioxidant Activity, and the Effect of the Aqueous Extract of Coffee (Coffea arabica L.) Bean Residual Press Cake on the Skin Wound Healing
title_sort phytochemical composition, antioxidant activity, and the effect of the aqueous extract of coffee (coffea arabica l.) bean residual press cake on the skin wound healing
publisher Hindawi Limited
series Oxidative Medicine and Cellular Longevity
issn 1942-0900
1942-0994
publishDate 2016-01-01
description The world coffee consumption has been growing for its appreciated taste and its beneficial effects on health. The residual biomass of coffee, originated in the food industry after oil extraction from coffee beans, called coffee beans residual press cake, has attracted interest as a source of compounds with antioxidant activity. This study investigated the chemical composition of aqueous extracts of coffee beans residual press cake (AE), their antioxidant activity, and the effect of topical application on the skin wound healing, in animal model, of hydrogels containing the AE, chlorogenic acid (CGA), allantoin (positive control), and carbopol (negative control). The treatments’ performance was compared by measuring the reduction of the wound area, with superior result (p<0.05) for the green coffee AE (78.20%) with respect to roasted coffee AE (53.71%), allantoin (70.83%), and carbopol (23.56%). CGA hydrogels reduced significantly the wound area size on the inflammatory phase, which may be associated with the well known antioxidant and anti-inflammatory actions of that compound. The topic use of the coffee AE studied improved the skin wound healing and points to an interesting biotechnological application of the coffee bean residual press cake.
url http://dx.doi.org/10.1155/2016/1923754
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