β Mangostin suppress LPS-induced inflammatory response in RAW 264.7 macrophages in vitro and carrageenan-induced peritonitis in vivo

Ethnopharmacological relevance The fruit hull of Garcinia mangostana Linn. has been used in traditional medicine for treatment of various inflammatory diseases. Hence, this study aims to investigate the in vitro and in vivo anti-inflammatory effect of β mangostin (βM), a major compound present in G...

Full description

Bibliographic Details
Main Authors: Syam, S., Bustamam, A., Abdullah, R., Sukari, M.A., Hashim, N.M., Mohan, S., Looi, C.Y., Wong, W.F., Yahayu, M.A., Abdelwahab, S.I.
Format: Article
Published: Elsevier 2014
Subjects:
_version_ 1825720281575981056
author Syam, S.
Bustamam, A.
Abdullah, R.
Sukari, M.A.
Hashim, N.M.
Mohan, S.
Looi, C.Y.
Wong, W.F.
Yahayu, M.A.
Abdelwahab, S.I.
author_facet Syam, S.
Bustamam, A.
Abdullah, R.
Sukari, M.A.
Hashim, N.M.
Mohan, S.
Looi, C.Y.
Wong, W.F.
Yahayu, M.A.
Abdelwahab, S.I.
author_sort Syam, S.
collection UM
description Ethnopharmacological relevance The fruit hull of Garcinia mangostana Linn. has been used in traditional medicine for treatment of various inflammatory diseases. Hence, this study aims to investigate the in vitro and in vivo anti-inflammatory effect of β mangostin (βM), a major compound present in Garcinia mangostana. Materials and methods The in silico analysis of inflammatory mediators such as cyclooxygenase (COX) and nuclear factor-kappa B (NF-kB) were performed via molecular docking. Further evaluation of anti-inflammatory effect was conducted in lipopolysaccharide (LPS) induced RAW 264.7 macrophages. Suppression of activated NF-kB was analyzed by high content screening. βM triggered inhibition of COX-1 and COX-2 in vitro were studied using biochemical kit. The in vivo model used in this study was carrageenan-induced peritonitis model, where reduction in carrageenan-induced peritonitis is measured by leukocyte migration and vascular permeability. In addition, the evaluation of βM׳s effect on carrageenan induced TNF-α and IL-1β release on peritoneal fluid was also carried out. Results Treatment with βM could inhibit the LPS-induced NO production but not the viability of RAW 264.7. Similarly, βM inhibited PGE2 production and the cytokines: TNF-α and IL-6. The COX catalyzed prostaglandin biosynthesis assay had showed selective COX-2 inhibition with a 53.0±6.01% inhibition at 20 µg/ml. Apart from this, βM was capable in repressing translocation of NF-kB into the nucleus. These results were concurrent with molecular docking which revealed COX-2 selectivity and NF-kB inhibition. The in vivo analysis showed that after four hours of peritonitis, βM was unable to reduce vascular permeability, yet could decrease the total leukocyte migration; particularly, neutrophils. Meanwhile, dexamethasone 0.5 mg/kg, successfully reduced vascular permeability. The levels of TNF-α and IL-1β in peritoneal fluid was reduced significantly by βM treatment. Conclusion The current study supports the traditional use of Garcinia mangostana fruit hull for treatment of inflammatory conditions. In addition, it is clear that the anti-inflammatory efficacy of this plant is not limited to the presence of α and γ, but β also with significant activity.
first_indexed 2024-03-06T05:32:44Z
format Article
id um.eprints-13040
institution Universiti Malaya
last_indexed 2024-03-06T05:32:44Z
publishDate 2014
publisher Elsevier
record_format dspace
spelling um.eprints-130402015-03-16T01:31:16Z http://eprints.um.edu.my/13040/ β Mangostin suppress LPS-induced inflammatory response in RAW 264.7 macrophages in vitro and carrageenan-induced peritonitis in vivo Syam, S. Bustamam, A. Abdullah, R. Sukari, M.A. Hashim, N.M. Mohan, S. Looi, C.Y. Wong, W.F. Yahayu, M.A. Abdelwahab, S.I. R Medicine Ethnopharmacological relevance The fruit hull of Garcinia mangostana Linn. has been used in traditional medicine for treatment of various inflammatory diseases. Hence, this study aims to investigate the in vitro and in vivo anti-inflammatory effect of β mangostin (βM), a major compound present in Garcinia mangostana. Materials and methods The in silico analysis of inflammatory mediators such as cyclooxygenase (COX) and nuclear factor-kappa B (NF-kB) were performed via molecular docking. Further evaluation of anti-inflammatory effect was conducted in lipopolysaccharide (LPS) induced RAW 264.7 macrophages. Suppression of activated NF-kB was analyzed by high content screening. βM triggered inhibition of COX-1 and COX-2 in vitro were studied using biochemical kit. The in vivo model used in this study was carrageenan-induced peritonitis model, where reduction in carrageenan-induced peritonitis is measured by leukocyte migration and vascular permeability. In addition, the evaluation of βM׳s effect on carrageenan induced TNF-α and IL-1β release on peritoneal fluid was also carried out. Results Treatment with βM could inhibit the LPS-induced NO production but not the viability of RAW 264.7. Similarly, βM inhibited PGE2 production and the cytokines: TNF-α and IL-6. The COX catalyzed prostaglandin biosynthesis assay had showed selective COX-2 inhibition with a 53.0±6.01% inhibition at 20 µg/ml. Apart from this, βM was capable in repressing translocation of NF-kB into the nucleus. These results were concurrent with molecular docking which revealed COX-2 selectivity and NF-kB inhibition. The in vivo analysis showed that after four hours of peritonitis, βM was unable to reduce vascular permeability, yet could decrease the total leukocyte migration; particularly, neutrophils. Meanwhile, dexamethasone 0.5 mg/kg, successfully reduced vascular permeability. The levels of TNF-α and IL-1β in peritoneal fluid was reduced significantly by βM treatment. Conclusion The current study supports the traditional use of Garcinia mangostana fruit hull for treatment of inflammatory conditions. In addition, it is clear that the anti-inflammatory efficacy of this plant is not limited to the presence of α and γ, but β also with significant activity. Elsevier 2014-04-28 Article PeerReviewed Syam, S. and Bustamam, A. and Abdullah, R. and Sukari, M.A. and Hashim, N.M. and Mohan, S. and Looi, C.Y. and Wong, W.F. and Yahayu, M.A. and Abdelwahab, S.I. (2014) β Mangostin suppress LPS-induced inflammatory response in RAW 264.7 macrophages in vitro and carrageenan-induced peritonitis in vivo. Journal of Ethnopharmacology, 153 (2). pp. 435-445. ISSN 0378-8741, DOI https://doi.org/10.1016/j.jep.2014.02.051 <https://doi.org/10.1016/j.jep.2014.02.051>. http://www.sciencedirect.com/science/article/pii/S0378874114001779 http://dx.doi.org/10.1016/j.jep.2014.02.051
spellingShingle R Medicine
Syam, S.
Bustamam, A.
Abdullah, R.
Sukari, M.A.
Hashim, N.M.
Mohan, S.
Looi, C.Y.
Wong, W.F.
Yahayu, M.A.
Abdelwahab, S.I.
β Mangostin suppress LPS-induced inflammatory response in RAW 264.7 macrophages in vitro and carrageenan-induced peritonitis in vivo
title β Mangostin suppress LPS-induced inflammatory response in RAW 264.7 macrophages in vitro and carrageenan-induced peritonitis in vivo
title_full β Mangostin suppress LPS-induced inflammatory response in RAW 264.7 macrophages in vitro and carrageenan-induced peritonitis in vivo
title_fullStr β Mangostin suppress LPS-induced inflammatory response in RAW 264.7 macrophages in vitro and carrageenan-induced peritonitis in vivo
title_full_unstemmed β Mangostin suppress LPS-induced inflammatory response in RAW 264.7 macrophages in vitro and carrageenan-induced peritonitis in vivo
title_short β Mangostin suppress LPS-induced inflammatory response in RAW 264.7 macrophages in vitro and carrageenan-induced peritonitis in vivo
title_sort β mangostin suppress lps induced inflammatory response in raw 264 7 macrophages in vitro and carrageenan induced peritonitis in vivo
topic R Medicine
work_keys_str_mv AT syams bmangostinsuppresslpsinducedinflammatoryresponseinraw2647macrophagesinvitroandcarrageenaninducedperitonitisinvivo
AT bustamama bmangostinsuppresslpsinducedinflammatoryresponseinraw2647macrophagesinvitroandcarrageenaninducedperitonitisinvivo
AT abdullahr bmangostinsuppresslpsinducedinflammatoryresponseinraw2647macrophagesinvitroandcarrageenaninducedperitonitisinvivo
AT sukarima bmangostinsuppresslpsinducedinflammatoryresponseinraw2647macrophagesinvitroandcarrageenaninducedperitonitisinvivo
AT hashimnm bmangostinsuppresslpsinducedinflammatoryresponseinraw2647macrophagesinvitroandcarrageenaninducedperitonitisinvivo
AT mohans bmangostinsuppresslpsinducedinflammatoryresponseinraw2647macrophagesinvitroandcarrageenaninducedperitonitisinvivo
AT looicy bmangostinsuppresslpsinducedinflammatoryresponseinraw2647macrophagesinvitroandcarrageenaninducedperitonitisinvivo
AT wongwf bmangostinsuppresslpsinducedinflammatoryresponseinraw2647macrophagesinvitroandcarrageenaninducedperitonitisinvivo
AT yahayuma bmangostinsuppresslpsinducedinflammatoryresponseinraw2647macrophagesinvitroandcarrageenaninducedperitonitisinvivo
AT abdelwahabsi bmangostinsuppresslpsinducedinflammatoryresponseinraw2647macrophagesinvitroandcarrageenaninducedperitonitisinvivo