The Intestinal Efflux Transporter Inhibition Activity of Xanthones from Mangosteen Pericarp: An In Silico, In Vitro and Ex Vivo Approach

The capacity of α-mangostin (α-MG) and β-mangostin (β-MG) from mangosteen pericarp on P-glycoprotein (Pgp) in silico, in vitro, and ex vivo was investigated in this study. Screening with the ADMET Predictor™ program predicted the two compounds to be both a Pgp inhibitor and Pgp substrate. The compou...

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Main Authors: Panudda Dechwongya, Songpol Limpisood, Nawong Boonnak, Supachoke Mangmool, Mariko Takeda-Morishita, Thitianan Kulsirirat, Pattarawit Rukthong, Korbtham Sathirakul
Other Authors: Mahidol University
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Published: 2021
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/60870
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spelling th-mahidol.608702021-02-03T13:01:47Z The Intestinal Efflux Transporter Inhibition Activity of Xanthones from Mangosteen Pericarp: An In Silico, In Vitro and Ex Vivo Approach Panudda Dechwongya Songpol Limpisood Nawong Boonnak Supachoke Mangmool Mariko Takeda-Morishita Thitianan Kulsirirat Pattarawit Rukthong Korbtham Sathirakul Mahidol University Thaksin University Kobe Gakuin University Srinakharinwirot University Biochemistry, Genetics and Molecular Biology Chemistry The capacity of α-mangostin (α-MG) and β-mangostin (β-MG) from mangosteen pericarp on P-glycoprotein (Pgp) in silico, in vitro, and ex vivo was investigated in this study. Screening with the ADMET Predictor™ program predicted the two compounds to be both a Pgp inhibitor and Pgp substrate. The compounds tended to interact with Pgp and inhibit Pgp ATPase activity. Additionally, bidirectional transport on Caco-2 cell monolayers demonstrated a significantly lower efflux ratio than that of the control (α-(44.68) and β-(46.08) MG versus the control (66.26); p < 0.05) indicating an inhibitory effect on Pgp activity. Test compounds additionally revealed a downregulation of MDR1 mRNA expression. Moreover, an ex vivo absorptive transport in everted mouse ileum confirmed the previous results that α-MG had a Pgp affinity inhibitor, leading to an increase in absorption of the Pgp substrate in the serosal side. In conclusion, α- and β-MG have the capability to inhibit Pgp and they also alter Pgp expression, which makes them possible candidates for reducing multidrug resistance. Additionally, they influence the bioavailability and transport of Pgp substrate drugs. 2021-02-03T04:52:58Z 2021-02-03T04:52:58Z 2020-12-11 Article Molecules (Basel, Switzerland). Vol.25, No.24 (2020) 10.3390/molecules25245877 14203049 2-s2.0-85098534080 https://repository.li.mahidol.ac.th/handle/123456789/60870 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85098534080&origin=inward
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Biochemistry, Genetics and Molecular Biology
Chemistry
spellingShingle Biochemistry, Genetics and Molecular Biology
Chemistry
Panudda Dechwongya
Songpol Limpisood
Nawong Boonnak
Supachoke Mangmool
Mariko Takeda-Morishita
Thitianan Kulsirirat
Pattarawit Rukthong
Korbtham Sathirakul
The Intestinal Efflux Transporter Inhibition Activity of Xanthones from Mangosteen Pericarp: An In Silico, In Vitro and Ex Vivo Approach
description The capacity of α-mangostin (α-MG) and β-mangostin (β-MG) from mangosteen pericarp on P-glycoprotein (Pgp) in silico, in vitro, and ex vivo was investigated in this study. Screening with the ADMET Predictor™ program predicted the two compounds to be both a Pgp inhibitor and Pgp substrate. The compounds tended to interact with Pgp and inhibit Pgp ATPase activity. Additionally, bidirectional transport on Caco-2 cell monolayers demonstrated a significantly lower efflux ratio than that of the control (α-(44.68) and β-(46.08) MG versus the control (66.26); p < 0.05) indicating an inhibitory effect on Pgp activity. Test compounds additionally revealed a downregulation of MDR1 mRNA expression. Moreover, an ex vivo absorptive transport in everted mouse ileum confirmed the previous results that α-MG had a Pgp affinity inhibitor, leading to an increase in absorption of the Pgp substrate in the serosal side. In conclusion, α- and β-MG have the capability to inhibit Pgp and they also alter Pgp expression, which makes them possible candidates for reducing multidrug resistance. Additionally, they influence the bioavailability and transport of Pgp substrate drugs.
author2 Mahidol University
author_facet Mahidol University
Panudda Dechwongya
Songpol Limpisood
Nawong Boonnak
Supachoke Mangmool
Mariko Takeda-Morishita
Thitianan Kulsirirat
Pattarawit Rukthong
Korbtham Sathirakul
format Article
author Panudda Dechwongya
Songpol Limpisood
Nawong Boonnak
Supachoke Mangmool
Mariko Takeda-Morishita
Thitianan Kulsirirat
Pattarawit Rukthong
Korbtham Sathirakul
author_sort Panudda Dechwongya
title The Intestinal Efflux Transporter Inhibition Activity of Xanthones from Mangosteen Pericarp: An In Silico, In Vitro and Ex Vivo Approach
title_short The Intestinal Efflux Transporter Inhibition Activity of Xanthones from Mangosteen Pericarp: An In Silico, In Vitro and Ex Vivo Approach
title_full The Intestinal Efflux Transporter Inhibition Activity of Xanthones from Mangosteen Pericarp: An In Silico, In Vitro and Ex Vivo Approach
title_fullStr The Intestinal Efflux Transporter Inhibition Activity of Xanthones from Mangosteen Pericarp: An In Silico, In Vitro and Ex Vivo Approach
title_full_unstemmed The Intestinal Efflux Transporter Inhibition Activity of Xanthones from Mangosteen Pericarp: An In Silico, In Vitro and Ex Vivo Approach
title_sort intestinal efflux transporter inhibition activity of xanthones from mangosteen pericarp: an in silico, in vitro and ex vivo approach
publishDate 2021
url https://repository.li.mahidol.ac.th/handle/123456789/60870
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