Facile and Rapid Isolation of Oxypeucedanin Hydrate and Byakangelicin from <i>Angelica dahurica</i> by Using [Bmim]Tf<sub>2</sub>N Ionic Liquid

Ionic liquids (ILs) have sparked much interest as alternative solvents for plant materials as they provide distinctive properties. Therefore, in this study, the capacity of ILs to extract oxypeucedanin hydrate and byakangelicin from the roots of <i>Angelica dahurica</i> (<i>A. dahu...

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Main Authors: Alice Nguvoko Kiyonga, Gyeongmin Hong, Hyun Su Kim, Young-Ger Suh, Kiwon Jung
Format: Article
Language:English
Published: MDPI AG 2021-02-01
Series:Molecules
Subjects:
Online Access:https://www.mdpi.com/1420-3049/26/4/830
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author Alice Nguvoko Kiyonga
Gyeongmin Hong
Hyun Su Kim
Young-Ger Suh
Kiwon Jung
author_facet Alice Nguvoko Kiyonga
Gyeongmin Hong
Hyun Su Kim
Young-Ger Suh
Kiwon Jung
author_sort Alice Nguvoko Kiyonga
collection DOAJ
description Ionic liquids (ILs) have sparked much interest as alternative solvents for plant materials as they provide distinctive properties. Therefore, in this study, the capacity of ILs to extract oxypeucedanin hydrate and byakangelicin from the roots of <i>Angelica dahurica</i> (<i>A. dahurica</i>) was investigated. The back-extraction method was examined to recover target components from the IL solution as well. Herein, [Bmim]Tf<sub>2</sub>N demonstrated outstanding performance for extracting oxypeucedanin hydrate and byakangelicin. Moreover, factors including solvent/solid ratio, extraction temperature and time were investigated and optimized using a statistical approach. Under optimum extraction conditions (solvent/solid ratio 8:1, temperature 60 °C and time 180 min), the yields of oxypeucedanin hydrate and byakangelicin were 98.06% and 99.52%, respectively. In addition, 0.01 N HCl showed the most significant ability to back-extract target components from the [Bmim]Tf<sub>2</sub>N solution. The total content of both oxypeucedanin hydrate (36.99%) and byakangelicin (45.12%) in the final product exceeded 80%. Based on the data, the proposed approach demonstrated satisfactory extraction ability, recovery and enrichment of target compounds in record time. Therefore, the developed approach is assumed essential to considerably reduce drawbacks encountered during the separation of oxypeucedanin hydrate and byakangelicin from the roots of <i>A. dahurica.</i>
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spelling doaj.art-2899fce2b5934cf1ab7f10f73d3de4452023-12-03T12:34:46ZengMDPI AGMolecules1420-30492021-02-0126483010.3390/molecules26040830Facile and Rapid Isolation of Oxypeucedanin Hydrate and Byakangelicin from <i>Angelica dahurica</i> by Using [Bmim]Tf<sub>2</sub>N Ionic LiquidAlice Nguvoko Kiyonga0Gyeongmin Hong1Hyun Su Kim2Young-Ger Suh3Kiwon Jung4Institute of Pharmaceutical Sciences, College of Pharmacy, CHA University, Sungnam 13844, KoreaInstitute of Pharmaceutical Sciences, College of Pharmacy, CHA University, Sungnam 13844, KoreaInstitute of Pharmaceutical Sciences, College of Pharmacy, CHA University, Sungnam 13844, KoreaInstitute of Pharmaceutical Sciences, College of Pharmacy, CHA University, Sungnam 13844, KoreaInstitute of Pharmaceutical Sciences, College of Pharmacy, CHA University, Sungnam 13844, KoreaIonic liquids (ILs) have sparked much interest as alternative solvents for plant materials as they provide distinctive properties. Therefore, in this study, the capacity of ILs to extract oxypeucedanin hydrate and byakangelicin from the roots of <i>Angelica dahurica</i> (<i>A. dahurica</i>) was investigated. The back-extraction method was examined to recover target components from the IL solution as well. Herein, [Bmim]Tf<sub>2</sub>N demonstrated outstanding performance for extracting oxypeucedanin hydrate and byakangelicin. Moreover, factors including solvent/solid ratio, extraction temperature and time were investigated and optimized using a statistical approach. Under optimum extraction conditions (solvent/solid ratio 8:1, temperature 60 °C and time 180 min), the yields of oxypeucedanin hydrate and byakangelicin were 98.06% and 99.52%, respectively. In addition, 0.01 N HCl showed the most significant ability to back-extract target components from the [Bmim]Tf<sub>2</sub>N solution. The total content of both oxypeucedanin hydrate (36.99%) and byakangelicin (45.12%) in the final product exceeded 80%. Based on the data, the proposed approach demonstrated satisfactory extraction ability, recovery and enrichment of target compounds in record time. Therefore, the developed approach is assumed essential to considerably reduce drawbacks encountered during the separation of oxypeucedanin hydrate and byakangelicin from the roots of <i>A. dahurica.</i>https://www.mdpi.com/1420-3049/26/4/830ionic liquidsoxypeucedanin hydratebyakangelicin<i>A. dahurica</i>back-extractionenrichment
spellingShingle Alice Nguvoko Kiyonga
Gyeongmin Hong
Hyun Su Kim
Young-Ger Suh
Kiwon Jung
Facile and Rapid Isolation of Oxypeucedanin Hydrate and Byakangelicin from <i>Angelica dahurica</i> by Using [Bmim]Tf<sub>2</sub>N Ionic Liquid
Molecules
ionic liquids
oxypeucedanin hydrate
byakangelicin
<i>A. dahurica</i>
back-extraction
enrichment
title Facile and Rapid Isolation of Oxypeucedanin Hydrate and Byakangelicin from <i>Angelica dahurica</i> by Using [Bmim]Tf<sub>2</sub>N Ionic Liquid
title_full Facile and Rapid Isolation of Oxypeucedanin Hydrate and Byakangelicin from <i>Angelica dahurica</i> by Using [Bmim]Tf<sub>2</sub>N Ionic Liquid
title_fullStr Facile and Rapid Isolation of Oxypeucedanin Hydrate and Byakangelicin from <i>Angelica dahurica</i> by Using [Bmim]Tf<sub>2</sub>N Ionic Liquid
title_full_unstemmed Facile and Rapid Isolation of Oxypeucedanin Hydrate and Byakangelicin from <i>Angelica dahurica</i> by Using [Bmim]Tf<sub>2</sub>N Ionic Liquid
title_short Facile and Rapid Isolation of Oxypeucedanin Hydrate and Byakangelicin from <i>Angelica dahurica</i> by Using [Bmim]Tf<sub>2</sub>N Ionic Liquid
title_sort facile and rapid isolation of oxypeucedanin hydrate and byakangelicin from i angelica dahurica i by using bmim tf sub 2 sub n ionic liquid
topic ionic liquids
oxypeucedanin hydrate
byakangelicin
<i>A. dahurica</i>
back-extraction
enrichment
url https://www.mdpi.com/1420-3049/26/4/830
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