Synthesis of mono- and di-esters of phenolic acids from oleaginous meals, and evaluation of their antioxidant activity in emulsion and liposomes

Rapeseed and sunflower meals contain high amounts of phenolic compounds, around 1-2 %DDM (delipidated dry matter) and 1-4 %DDM respectively. In rapeseed meal, 95 % of the total phenolic compounds (TPC) are sinapic acid esters. On the other hand, caffeic acid esters are the main phenolics of sunflower meal, accounting for at least 93 % of the TPC. Both sinapic and caffeic acids can be recovered after chemical or enzymatic hydrolysis of their corresponding esters, either from meals or from extracts. Phenolic acids, and more particularly hydroxycinnamic acids, are known to be bioactive molecules with antioxidant, anti-UV and antimicrobial properties. Their esterification with alcohols of adequate chain length allowed a drastic improvement of their antioxidant activity in liposome suspensions or O/W emulsions. This phenomenon, related to the so-called “cut-off effect”, was attributed to a better location and concentration of esters at the interfacial membrane, where lipid oxidation occur. Knowing this, the aim of this study was to synthetize mono- and di-esters of caffeic, chlorogenic and sinapic acid, the main phenolic acids present in rapeseed and sunflower meal. After direct esterification with diols of increasing alkyl chain length (C2-C16), the antioxidant activity of the resulting mono- and diesters (bearing respectively one and two phenolic moieties) was then studied in O/W emulsion and liposome suspensions as model systems. The compounds having the higher antioxidant capacity among each ester family were finally selected and compared against each other as a function of the model system.

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Main Authors: Laguna, Oscar, Durand, Erwann, Baréa, Bruno, Villeneuve, Pierre, Lecomte, Jérôme
Format: conference_item biblioteca
Language:eng
Published: Euro Fed Lipid
Online Access:http://agritrop.cirad.fr/597289/
http://agritrop.cirad.fr/597289/2/ID597289.pdf
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spelling dig-cirad-fr-5972892021-01-12T13:27:35Z http://agritrop.cirad.fr/597289/ http://agritrop.cirad.fr/597289/ Synthesis of mono- and di-esters of phenolic acids from oleaginous meals, and evaluation of their antioxidant activity in emulsion and liposomes. Laguna Oscar, Durand Erwann, Baréa Bruno, Villeneuve Pierre, Lecomte Jérôme. 2018. . Euro Fed Lipid. Belfast : Euro Fed Lipid, Résumé, 1 p. Euro Fed Lipid Congress: Fats, Oils and lipids: Science technology and nutrition in a changing world. 16, Belfast, Irlande, 16 Septembre 2018/19 Septembre 2018. Researchers Synthesis of mono- and di-esters of phenolic acids from oleaginous meals, and evaluation of their antioxidant activity in emulsion and liposomes Laguna, Oscar Durand, Erwann Baréa, Bruno Villeneuve, Pierre Lecomte, Jérôme eng 2018 Euro Fed Lipid Rapeseed and sunflower meals contain high amounts of phenolic compounds, around 1-2 %DDM (delipidated dry matter) and 1-4 %DDM respectively. In rapeseed meal, 95 % of the total phenolic compounds (TPC) are sinapic acid esters. On the other hand, caffeic acid esters are the main phenolics of sunflower meal, accounting for at least 93 % of the TPC. Both sinapic and caffeic acids can be recovered after chemical or enzymatic hydrolysis of their corresponding esters, either from meals or from extracts. Phenolic acids, and more particularly hydroxycinnamic acids, are known to be bioactive molecules with antioxidant, anti-UV and antimicrobial properties. Their esterification with alcohols of adequate chain length allowed a drastic improvement of their antioxidant activity in liposome suspensions or O/W emulsions. This phenomenon, related to the so-called “cut-off effect”, was attributed to a better location and concentration of esters at the interfacial membrane, where lipid oxidation occur. Knowing this, the aim of this study was to synthetize mono- and di-esters of caffeic, chlorogenic and sinapic acid, the main phenolic acids present in rapeseed and sunflower meal. After direct esterification with diols of increasing alkyl chain length (C2-C16), the antioxidant activity of the resulting mono- and diesters (bearing respectively one and two phenolic moieties) was then studied in O/W emulsion and liposome suspensions as model systems. The compounds having the higher antioxidant capacity among each ester family were finally selected and compared against each other as a function of the model system. conference_item info:eu-repo/semantics/conferenceObject Conference info:eu-repo/semantics/publishedVersion http://agritrop.cirad.fr/597289/2/ID597289.pdf text Cirad license info:eu-repo/semantics/restrictedAccess https://agritrop.cirad.fr/mention_legale.html
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libraryname Biblioteca del CIRAD Francia
language eng
description Rapeseed and sunflower meals contain high amounts of phenolic compounds, around 1-2 %DDM (delipidated dry matter) and 1-4 %DDM respectively. In rapeseed meal, 95 % of the total phenolic compounds (TPC) are sinapic acid esters. On the other hand, caffeic acid esters are the main phenolics of sunflower meal, accounting for at least 93 % of the TPC. Both sinapic and caffeic acids can be recovered after chemical or enzymatic hydrolysis of their corresponding esters, either from meals or from extracts. Phenolic acids, and more particularly hydroxycinnamic acids, are known to be bioactive molecules with antioxidant, anti-UV and antimicrobial properties. Their esterification with alcohols of adequate chain length allowed a drastic improvement of their antioxidant activity in liposome suspensions or O/W emulsions. This phenomenon, related to the so-called “cut-off effect”, was attributed to a better location and concentration of esters at the interfacial membrane, where lipid oxidation occur. Knowing this, the aim of this study was to synthetize mono- and di-esters of caffeic, chlorogenic and sinapic acid, the main phenolic acids present in rapeseed and sunflower meal. After direct esterification with diols of increasing alkyl chain length (C2-C16), the antioxidant activity of the resulting mono- and diesters (bearing respectively one and two phenolic moieties) was then studied in O/W emulsion and liposome suspensions as model systems. The compounds having the higher antioxidant capacity among each ester family were finally selected and compared against each other as a function of the model system.
format conference_item
author Laguna, Oscar
Durand, Erwann
Baréa, Bruno
Villeneuve, Pierre
Lecomte, Jérôme
spellingShingle Laguna, Oscar
Durand, Erwann
Baréa, Bruno
Villeneuve, Pierre
Lecomte, Jérôme
Synthesis of mono- and di-esters of phenolic acids from oleaginous meals, and evaluation of their antioxidant activity in emulsion and liposomes
author_facet Laguna, Oscar
Durand, Erwann
Baréa, Bruno
Villeneuve, Pierre
Lecomte, Jérôme
author_sort Laguna, Oscar
title Synthesis of mono- and di-esters of phenolic acids from oleaginous meals, and evaluation of their antioxidant activity in emulsion and liposomes
title_short Synthesis of mono- and di-esters of phenolic acids from oleaginous meals, and evaluation of their antioxidant activity in emulsion and liposomes
title_full Synthesis of mono- and di-esters of phenolic acids from oleaginous meals, and evaluation of their antioxidant activity in emulsion and liposomes
title_fullStr Synthesis of mono- and di-esters of phenolic acids from oleaginous meals, and evaluation of their antioxidant activity in emulsion and liposomes
title_full_unstemmed Synthesis of mono- and di-esters of phenolic acids from oleaginous meals, and evaluation of their antioxidant activity in emulsion and liposomes
title_sort synthesis of mono- and di-esters of phenolic acids from oleaginous meals, and evaluation of their antioxidant activity in emulsion and liposomes
publisher Euro Fed Lipid
url http://agritrop.cirad.fr/597289/
http://agritrop.cirad.fr/597289/2/ID597289.pdf
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