Synthesis and antiradical properties of novel diacylglycerols rosmarinate conjugates
ln compartmentalized systems, it is generally considered advantageous for antioxidants to exhibit surface activity. Surface-activity, hence hydrophobicity, allows the antioxidant to fuse with lipid-water interfaces and membranes and to be efficiently ta ken up by living cells. Thus, hydrophobie antioxidants are supposedly more internalized within cells than their hydrophilic counterparts. As such, they are thought to more effectively deal with the many reactive oxygen species (ROS) released into the cytosol. One reliable strategy to design a surface-active antioxidant is to incorporate positioned lipophilic groups by lipophilization. To date, a multitude of lipophilized antioxidants have been synthesized to obtain multifunctional compounds called "phenolipids". To have a global picture ofthe raie of the lipophilic moiety on antioxidant activity, we tested other lipophilic moieties consisting of diacylglycerols grafted onto rosmarinic acid. Accordingly, herein is described a chemo-enzymatic route to prepare these 1,2- diacylglycerol rosmarinate conjugates with various chain lengths These phenolipids so prepared were then finally assessed for their antioxidant activity in a ROS-overexpressing cell line of human dermal fibroblasts.
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dig-cirad-fr-5972102024-10-18T16:13:08Z http://agritrop.cirad.fr/597210/ http://agritrop.cirad.fr/597210/ Synthesis and antiradical properties of novel diacylglycerols rosmarinate conjugates. Villeneuve Claude, Bayrasy Christelle, Durand Erwann, Lecomte Jérôme. 2014. In : Lipid oxidation and quality: abstracts. AOCS. San Antonio : AOCS, Résumé, p. 11. AOCS Annual Meeting and Short Course. 105, San Antonio, États-Unis, 4 Mai 2014/7 Mai 2014.https://www.aocs.org/attend-meetings/archives/105th-aocs-annual-meeting-and-short-courses?SSO=True <https://www.aocs.org/attend-meetings/archives/105th-aocs-annual-meeting-and-short-courses?SSO=True> Synthesis and antiradical properties of novel diacylglycerols rosmarinate conjugates Villeneuve, Claude Bayrasy, Christelle Durand, Erwann Lecomte, Jérôme eng 2014 AOCS Lipid oxidation and quality: abstracts ln compartmentalized systems, it is generally considered advantageous for antioxidants to exhibit surface activity. Surface-activity, hence hydrophobicity, allows the antioxidant to fuse with lipid-water interfaces and membranes and to be efficiently ta ken up by living cells. Thus, hydrophobie antioxidants are supposedly more internalized within cells than their hydrophilic counterparts. As such, they are thought to more effectively deal with the many reactive oxygen species (ROS) released into the cytosol. One reliable strategy to design a surface-active antioxidant is to incorporate positioned lipophilic groups by lipophilization. To date, a multitude of lipophilized antioxidants have been synthesized to obtain multifunctional compounds called "phenolipids". To have a global picture ofthe raie of the lipophilic moiety on antioxidant activity, we tested other lipophilic moieties consisting of diacylglycerols grafted onto rosmarinic acid. Accordingly, herein is described a chemo-enzymatic route to prepare these 1,2- diacylglycerol rosmarinate conjugates with various chain lengths These phenolipids so prepared were then finally assessed for their antioxidant activity in a ROS-overexpressing cell line of human dermal fibroblasts. conference_item info:eu-repo/semantics/conferenceObject Conference info:eu-repo/semantics/publishedVersion http://agritrop.cirad.fr/597210/7/ID597210.pdf text Cirad license info:eu-repo/semantics/openAccess https://agritrop.cirad.fr/mention_legale.html https://www.aocs.org/attend-meetings/archives/105th-aocs-annual-meeting-and-short-courses?SSO=True info:eu-repo/semantics/altIdentifier/purl/https://www.aocs.org/attend-meetings/archives/105th-aocs-annual-meeting-and-short-courses?SSO=True |
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ln compartmentalized systems, it is generally considered advantageous for antioxidants to exhibit surface activity. Surface-activity, hence hydrophobicity, allows the antioxidant to fuse with lipid-water interfaces and membranes and to be efficiently ta ken up by living cells. Thus, hydrophobie antioxidants are supposedly more internalized within cells than their hydrophilic counterparts. As such, they are thought to more effectively deal with the many reactive oxygen species (ROS) released into the cytosol. One reliable strategy to design a surface-active antioxidant is to incorporate positioned lipophilic groups by lipophilization. To date, a multitude of lipophilized antioxidants have been synthesized to obtain multifunctional compounds called "phenolipids". To have a global picture ofthe raie of the lipophilic moiety on antioxidant activity, we tested other lipophilic moieties consisting of diacylglycerols grafted onto rosmarinic acid. Accordingly, herein is described a chemo-enzymatic route to prepare these 1,2- diacylglycerol rosmarinate conjugates with various chain lengths These phenolipids so prepared were then finally assessed for their antioxidant activity in a ROS-overexpressing cell line of human dermal fibroblasts. |
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conference_item |
author |
Villeneuve, Claude Bayrasy, Christelle Durand, Erwann Lecomte, Jérôme |
spellingShingle |
Villeneuve, Claude Bayrasy, Christelle Durand, Erwann Lecomte, Jérôme Synthesis and antiradical properties of novel diacylglycerols rosmarinate conjugates |
author_facet |
Villeneuve, Claude Bayrasy, Christelle Durand, Erwann Lecomte, Jérôme |
author_sort |
Villeneuve, Claude |
title |
Synthesis and antiradical properties of novel diacylglycerols rosmarinate conjugates |
title_short |
Synthesis and antiradical properties of novel diacylglycerols rosmarinate conjugates |
title_full |
Synthesis and antiradical properties of novel diacylglycerols rosmarinate conjugates |
title_fullStr |
Synthesis and antiradical properties of novel diacylglycerols rosmarinate conjugates |
title_full_unstemmed |
Synthesis and antiradical properties of novel diacylglycerols rosmarinate conjugates |
title_sort |
synthesis and antiradical properties of novel diacylglycerols rosmarinate conjugates |
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AOCS |
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http://agritrop.cirad.fr/597210/ http://agritrop.cirad.fr/597210/7/ID597210.pdf |
work_keys_str_mv |
AT villeneuveclaude synthesisandantiradicalpropertiesofnoveldiacylglycerolsrosmarinateconjugates AT bayrasychristelle synthesisandantiradicalpropertiesofnoveldiacylglycerolsrosmarinateconjugates AT duranderwann synthesisandantiradicalpropertiesofnoveldiacylglycerolsrosmarinateconjugates AT lecomtejerome synthesisandantiradicalpropertiesofnoveldiacylglycerolsrosmarinateconjugates |
_version_ |
1813421856173064192 |