Lipase-catalyzed synthesis of phloridzin esters

Phloridzin is member of chemical class of dihydrochalcones, phenylpropanoids with structure similar to chalcones, immediate flavonoid precursors, hence it is often classified as flavonoid glucoside [1,2]. It is usually extracted from Malus species since it is very abundant in young apple leaves and...

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Main Authors: Milisavljević, Ana, Stojanović, Marija, Dinić, Ivana, Carević, Milica, Mihailović, Mladen, Milosavić, Nenad, Bezbradica, Dejan
Format: Conference Object
Language:English
Published: 2013
Subjects:
Online Access:http://TechnoRep.tmf.bg.ac.rs/handle/123456789/6070
https://hdl.handle.net/21.15107/rcub_technorep_6070
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spelling ftunivbelgradftm:oai:TechnoRep.tmf.bg.ac.rs:123456789/6070 2023-12-24T10:09:31+01:00 Lipase-catalyzed synthesis of phloridzin esters Milisavljević, Ana Stojanović, Marija Dinić, Ivana Carević, Milica Mihailović, Mladen Milosavić, Nenad Bezbradica, Dejan 2013 http://TechnoRep.tmf.bg.ac.rs/handle/123456789/6070 https://hdl.handle.net/21.15107/rcub_technorep_6070 en eng info:eu-repo/grantAgreement/MESTD/Integrated and Interdisciplinary Research (IIR or III)/46010/RS// 978-86-7132-053-5 http://TechnoRep.tmf.bg.ac.rs/handle/123456789/6070 https://hdl.handle.net/21.15107/rcub_technorep_6070 restrictedAccess ARR 8th International Conference of the Chemical Societies of the South-East European Countries, Belgrade, Serbia conferenceObject publishedVersion 2013 ftunivbelgradftm 2023-11-28T17:19:57Z Phloridzin is member of chemical class of dihydrochalcones, phenylpropanoids with structure similar to chalcones, immediate flavonoid precursors, hence it is often classified as flavonoid glucoside [1,2]. It is usually extracted from Malus species since it is very abundant in young apple leaves and twigs. Due to its phenolic structure, phloridzin has significant antioxidant activity and anti-UV properties, which makes it interesting for application in food and cosmetics. Major limitation to wider application of phloridzin is its low solubility in hydrophobic environment, which can be circumvented by synthesis of physiologically active compounds derivatives by acylation of phloridzin. Synthesis of acyl esters can be catalyzed by inorganic catalysts or enzymes, but chemical esterification is not regioselective and results with unwanted functionalization of phenolic hydroxyl groups responsible for antioxidative properties. Therefore, in our study enzymatic esterification of phloridzin was performed using immobilized lipase from Candida antarctica (Novozyme® 435). Several organic solvents were tested and acetonitrile was proved to be the most adequate medium for this reaction. Different acyl-donors were used with respect to chain length and saturation level. Potential physiological activity of obtained esters was evaluated by determination of their antioxidant activity using DPPH assay, so acyl donors were compared with respect to both, product yields and antioxidant activity. After comparison of results of preliminary study, phloridzyl oleate was selected as derivative with the best prospects and it used in further experimental series for optimization of key experimental factors. Response surface methodology was applied as statistical tool for optimization of product concentration (in mM) as output and analyzed factors were: reaction time, temperature, enzyme concentration, substrate molar ratio, and phloridzin concentration. After statistical analysis each of examined experimental factors was found significant and ... Conference Object Antarc* Antarctica TechnoRep - Faculty of Technology and Metallurgy Repository Malus ENVELOPE(-65.734,-65.734,-66.229,-66.229)
institution Open Polar
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op_collection_id ftunivbelgradftm
language English
description Phloridzin is member of chemical class of dihydrochalcones, phenylpropanoids with structure similar to chalcones, immediate flavonoid precursors, hence it is often classified as flavonoid glucoside [1,2]. It is usually extracted from Malus species since it is very abundant in young apple leaves and twigs. Due to its phenolic structure, phloridzin has significant antioxidant activity and anti-UV properties, which makes it interesting for application in food and cosmetics. Major limitation to wider application of phloridzin is its low solubility in hydrophobic environment, which can be circumvented by synthesis of physiologically active compounds derivatives by acylation of phloridzin. Synthesis of acyl esters can be catalyzed by inorganic catalysts or enzymes, but chemical esterification is not regioselective and results with unwanted functionalization of phenolic hydroxyl groups responsible for antioxidative properties. Therefore, in our study enzymatic esterification of phloridzin was performed using immobilized lipase from Candida antarctica (Novozyme® 435). Several organic solvents were tested and acetonitrile was proved to be the most adequate medium for this reaction. Different acyl-donors were used with respect to chain length and saturation level. Potential physiological activity of obtained esters was evaluated by determination of their antioxidant activity using DPPH assay, so acyl donors were compared with respect to both, product yields and antioxidant activity. After comparison of results of preliminary study, phloridzyl oleate was selected as derivative with the best prospects and it used in further experimental series for optimization of key experimental factors. Response surface methodology was applied as statistical tool for optimization of product concentration (in mM) as output and analyzed factors were: reaction time, temperature, enzyme concentration, substrate molar ratio, and phloridzin concentration. After statistical analysis each of examined experimental factors was found significant and ...
format Conference Object
author Milisavljević, Ana
Stojanović, Marija
Dinić, Ivana
Carević, Milica
Mihailović, Mladen
Milosavić, Nenad
Bezbradica, Dejan
spellingShingle Milisavljević, Ana
Stojanović, Marija
Dinić, Ivana
Carević, Milica
Mihailović, Mladen
Milosavić, Nenad
Bezbradica, Dejan
Lipase-catalyzed synthesis of phloridzin esters
author_facet Milisavljević, Ana
Stojanović, Marija
Dinić, Ivana
Carević, Milica
Mihailović, Mladen
Milosavić, Nenad
Bezbradica, Dejan
author_sort Milisavljević, Ana
title Lipase-catalyzed synthesis of phloridzin esters
title_short Lipase-catalyzed synthesis of phloridzin esters
title_full Lipase-catalyzed synthesis of phloridzin esters
title_fullStr Lipase-catalyzed synthesis of phloridzin esters
title_full_unstemmed Lipase-catalyzed synthesis of phloridzin esters
title_sort lipase-catalyzed synthesis of phloridzin esters
publishDate 2013
url http://TechnoRep.tmf.bg.ac.rs/handle/123456789/6070
https://hdl.handle.net/21.15107/rcub_technorep_6070
long_lat ENVELOPE(-65.734,-65.734,-66.229,-66.229)
geographic Malus
geographic_facet Malus
genre Antarc*
Antarctica
genre_facet Antarc*
Antarctica
op_source 8th International Conference of the Chemical Societies of the South-East European Countries, Belgrade, Serbia
op_relation info:eu-repo/grantAgreement/MESTD/Integrated and Interdisciplinary Research (IIR or III)/46010/RS//
978-86-7132-053-5
http://TechnoRep.tmf.bg.ac.rs/handle/123456789/6070
https://hdl.handle.net/21.15107/rcub_technorep_6070
op_rights restrictedAccess
ARR
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