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From the Front or Back Door? Quantitative analysis of direct and indirect extractions of α-mangostin from mangosteen (Garcinia mangostana)

The pulp and pericarp of mangosteen (Garcinia mangostana) fruit are popular food, beverage and health products whereby 60% of the fruit consist of the pericarp. The major metabolite in the previously neglected or less economically significant part of the fruit, the pericarp, is the prenylated xantho...

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Autores principales: Eukun Sage, Edison, Jailani, Nashriq, Md. Taib, Azney Zuhaily, Mohd Noor, Normah, Mohd Said, Md. Ikram, Abu Bakar, Muntaz, Mackeen, Mukram Mohamed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6188793/
https://www.ncbi.nlm.nih.gov/pubmed/30321238
http://dx.doi.org/10.1371/journal.pone.0205753
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author Eukun Sage, Edison
Jailani, Nashriq
Md. Taib, Azney Zuhaily
Mohd Noor, Normah
Mohd Said, Md. Ikram
Abu Bakar, Muntaz
Mackeen, Mukram Mohamed
author_facet Eukun Sage, Edison
Jailani, Nashriq
Md. Taib, Azney Zuhaily
Mohd Noor, Normah
Mohd Said, Md. Ikram
Abu Bakar, Muntaz
Mackeen, Mukram Mohamed
author_sort Eukun Sage, Edison
collection PubMed
description The pulp and pericarp of mangosteen (Garcinia mangostana) fruit are popular food, beverage and health products whereby 60% of the fruit consist of the pericarp. The major metabolite in the previously neglected or less economically significant part of the fruit, the pericarp, is the prenylated xanthone α-mangostin. This highly bioactive secondary metabolite is typically isolated using solvent extraction methods that involve large volumes of halogenated solvents either via direct or indirect extraction. In this study, we compared the quantities of α-mangostin extracted using three different extraction methods based on the environmentally friendly solvents methanol and ethyl acetate. The three solvent extractions methods used were direct extractions from methanol (DM) and ethyl acetate (DEA) as well as indirect extraction of ethyl acetate obtained via solvent partitioning from an initial methanol extract (IEA). Our results showed that direct extraction afforded similar and higher quantities of α-mangostin than indirect extraction (DM: 318 mg; DEA: 305 mg; IEA: 209 mg per 5 g total dried pericarp). Therefore, we suggest that the commonly used method of indirect solvent extraction using halogenated solvents for the isolation of α-mangostin is replaced by single solvent direct extraction using the environmentally friendly solvents methanol or ethyl acetate.
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spelling pubmed-61887932018-10-26 From the Front or Back Door? Quantitative analysis of direct and indirect extractions of α-mangostin from mangosteen (Garcinia mangostana) Eukun Sage, Edison Jailani, Nashriq Md. Taib, Azney Zuhaily Mohd Noor, Normah Mohd Said, Md. Ikram Abu Bakar, Muntaz Mackeen, Mukram Mohamed PLoS One Research Article The pulp and pericarp of mangosteen (Garcinia mangostana) fruit are popular food, beverage and health products whereby 60% of the fruit consist of the pericarp. The major metabolite in the previously neglected or less economically significant part of the fruit, the pericarp, is the prenylated xanthone α-mangostin. This highly bioactive secondary metabolite is typically isolated using solvent extraction methods that involve large volumes of halogenated solvents either via direct or indirect extraction. In this study, we compared the quantities of α-mangostin extracted using three different extraction methods based on the environmentally friendly solvents methanol and ethyl acetate. The three solvent extractions methods used were direct extractions from methanol (DM) and ethyl acetate (DEA) as well as indirect extraction of ethyl acetate obtained via solvent partitioning from an initial methanol extract (IEA). Our results showed that direct extraction afforded similar and higher quantities of α-mangostin than indirect extraction (DM: 318 mg; DEA: 305 mg; IEA: 209 mg per 5 g total dried pericarp). Therefore, we suggest that the commonly used method of indirect solvent extraction using halogenated solvents for the isolation of α-mangostin is replaced by single solvent direct extraction using the environmentally friendly solvents methanol or ethyl acetate. Public Library of Science 2018-10-15 /pmc/articles/PMC6188793/ /pubmed/30321238 http://dx.doi.org/10.1371/journal.pone.0205753 Text en © 2018 Eukun Sage et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Eukun Sage, Edison
Jailani, Nashriq
Md. Taib, Azney Zuhaily
Mohd Noor, Normah
Mohd Said, Md. Ikram
Abu Bakar, Muntaz
Mackeen, Mukram Mohamed
From the Front or Back Door? Quantitative analysis of direct and indirect extractions of α-mangostin from mangosteen (Garcinia mangostana)
title From the Front or Back Door? Quantitative analysis of direct and indirect extractions of α-mangostin from mangosteen (Garcinia mangostana)
title_full From the Front or Back Door? Quantitative analysis of direct and indirect extractions of α-mangostin from mangosteen (Garcinia mangostana)
title_fullStr From the Front or Back Door? Quantitative analysis of direct and indirect extractions of α-mangostin from mangosteen (Garcinia mangostana)
title_full_unstemmed From the Front or Back Door? Quantitative analysis of direct and indirect extractions of α-mangostin from mangosteen (Garcinia mangostana)
title_short From the Front or Back Door? Quantitative analysis of direct and indirect extractions of α-mangostin from mangosteen (Garcinia mangostana)
title_sort from the front or back door? quantitative analysis of direct and indirect extractions of α-mangostin from mangosteen (garcinia mangostana)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6188793/
https://www.ncbi.nlm.nih.gov/pubmed/30321238
http://dx.doi.org/10.1371/journal.pone.0205753
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