Palm-based tocotrienol-rich fraction (TRF) supplementation modulates cardiac sod1 expression, fxr target gene expression, and tauro-conjugated bile acid levels in aleptinemic mice fed a high-fat diet

Tocotrienol-rich fraction (TRF) has been reported to protect the heart from oxidative stress-induced inflammation. It is, however, unclear whether the protective effects of TRF against oxidative stress involve the activation of farnesoid X receptor (fxr), a bile acid receptor, and the regulation of...

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Published in:Genes and Nutrition
Main Author: Md Shahrulnizam N.A.N.; Mohd Efendy Goon M.D.; Ab Rahim S.; Lew S.W.; Sheikh Abdul Kadir S.H.; Ibrahim E.
Format: Article
Language:English
Published: BioMed Central Ltd 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85186207396&doi=10.1186%2fs12263-024-00742-9&partnerID=40&md5=0ddb3faf57d33241a5b728ae13977b65
id 2-s2.0-85186207396
spelling 2-s2.0-85186207396
Md Shahrulnizam N.A.N.; Mohd Efendy Goon M.D.; Ab Rahim S.; Lew S.W.; Sheikh Abdul Kadir S.H.; Ibrahim E.
Palm-based tocotrienol-rich fraction (TRF) supplementation modulates cardiac sod1 expression, fxr target gene expression, and tauro-conjugated bile acid levels in aleptinemic mice fed a high-fat diet
2024
Genes and Nutrition
19
1
10.1186/s12263-024-00742-9
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85186207396&doi=10.1186%2fs12263-024-00742-9&partnerID=40&md5=0ddb3faf57d33241a5b728ae13977b65
Tocotrienol-rich fraction (TRF) has been reported to protect the heart from oxidative stress-induced inflammation. It is, however, unclear whether the protective effects of TRF against oxidative stress involve the activation of farnesoid X receptor (fxr), a bile acid receptor, and the regulation of bile acid metabolites. In the current study, we investigated the effects of TRF supplementation on antioxidant activities, expression of fxr and its target genes in cardiac tissue, and serum untargeted metabolomics of high-fat diet-fed mice. Mice were divided into high-fat diet (HFD) with or without TRF supplementation (control) for 6 weeks. At the end of the intervention, body weight (BW), waist circumference (WC), and random blood glucose were measured. Heart tissues were collected, and the gene expression of sod1, sod2, gpx, and fxr and its target genes shp and stat3 was determined. Serum was subjected to untargeted metabolomic analysis using UHPLC-Orbitrap. In comparison to the control, the WC of the TRF-treated group was higher (p >0.05) than that of the HFD-only group, in addition there was no significant difference in weight or random blood glucose level. Downregulation of sod1, sod2, and gpx expression was observed in TRF-treated mice; however, only sod1 was significant when compared to the HFD only group. The expression of cardiac shp (fxr target gene) was significantly upregulated, but stat3 was significantly downregulated in the TRF-treated group compared to the HFD-only group. Biochemical pathways found to be influenced by TRF supplementation include bile acid secretion, primary bile acid biosynthesis, and biotin and cholesterol metabolism. In conclusion, TRF supplementation in HFD-fed mice affects antioxidant activities, and more interestingly, TRF also acts as a signaling molecule that is possibly involved in several bile acid-related biochemical pathways accompanied by an increase in cardiac fxr shp expression. This study provides new insight into TRF in deregulating bile acid receptors and metabolites in high-fat diet-fed mice. © The Author(s) 2024.
BioMed Central Ltd
15558932
English
Article
All Open Access; Gold Open Access
author Md Shahrulnizam N.A.N.; Mohd Efendy Goon M.D.; Ab Rahim S.; Lew S.W.; Sheikh Abdul Kadir S.H.; Ibrahim E.
spellingShingle Md Shahrulnizam N.A.N.; Mohd Efendy Goon M.D.; Ab Rahim S.; Lew S.W.; Sheikh Abdul Kadir S.H.; Ibrahim E.
Palm-based tocotrienol-rich fraction (TRF) supplementation modulates cardiac sod1 expression, fxr target gene expression, and tauro-conjugated bile acid levels in aleptinemic mice fed a high-fat diet
author_facet Md Shahrulnizam N.A.N.; Mohd Efendy Goon M.D.; Ab Rahim S.; Lew S.W.; Sheikh Abdul Kadir S.H.; Ibrahim E.
author_sort Md Shahrulnizam N.A.N.; Mohd Efendy Goon M.D.; Ab Rahim S.; Lew S.W.; Sheikh Abdul Kadir S.H.; Ibrahim E.
title Palm-based tocotrienol-rich fraction (TRF) supplementation modulates cardiac sod1 expression, fxr target gene expression, and tauro-conjugated bile acid levels in aleptinemic mice fed a high-fat diet
title_short Palm-based tocotrienol-rich fraction (TRF) supplementation modulates cardiac sod1 expression, fxr target gene expression, and tauro-conjugated bile acid levels in aleptinemic mice fed a high-fat diet
title_full Palm-based tocotrienol-rich fraction (TRF) supplementation modulates cardiac sod1 expression, fxr target gene expression, and tauro-conjugated bile acid levels in aleptinemic mice fed a high-fat diet
title_fullStr Palm-based tocotrienol-rich fraction (TRF) supplementation modulates cardiac sod1 expression, fxr target gene expression, and tauro-conjugated bile acid levels in aleptinemic mice fed a high-fat diet
title_full_unstemmed Palm-based tocotrienol-rich fraction (TRF) supplementation modulates cardiac sod1 expression, fxr target gene expression, and tauro-conjugated bile acid levels in aleptinemic mice fed a high-fat diet
title_sort Palm-based tocotrienol-rich fraction (TRF) supplementation modulates cardiac sod1 expression, fxr target gene expression, and tauro-conjugated bile acid levels in aleptinemic mice fed a high-fat diet
publishDate 2024
container_title Genes and Nutrition
container_volume 19
container_issue 1
doi_str_mv 10.1186/s12263-024-00742-9
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85186207396&doi=10.1186%2fs12263-024-00742-9&partnerID=40&md5=0ddb3faf57d33241a5b728ae13977b65
description Tocotrienol-rich fraction (TRF) has been reported to protect the heart from oxidative stress-induced inflammation. It is, however, unclear whether the protective effects of TRF against oxidative stress involve the activation of farnesoid X receptor (fxr), a bile acid receptor, and the regulation of bile acid metabolites. In the current study, we investigated the effects of TRF supplementation on antioxidant activities, expression of fxr and its target genes in cardiac tissue, and serum untargeted metabolomics of high-fat diet-fed mice. Mice were divided into high-fat diet (HFD) with or without TRF supplementation (control) for 6 weeks. At the end of the intervention, body weight (BW), waist circumference (WC), and random blood glucose were measured. Heart tissues were collected, and the gene expression of sod1, sod2, gpx, and fxr and its target genes shp and stat3 was determined. Serum was subjected to untargeted metabolomic analysis using UHPLC-Orbitrap. In comparison to the control, the WC of the TRF-treated group was higher (p >0.05) than that of the HFD-only group, in addition there was no significant difference in weight or random blood glucose level. Downregulation of sod1, sod2, and gpx expression was observed in TRF-treated mice; however, only sod1 was significant when compared to the HFD only group. The expression of cardiac shp (fxr target gene) was significantly upregulated, but stat3 was significantly downregulated in the TRF-treated group compared to the HFD-only group. Biochemical pathways found to be influenced by TRF supplementation include bile acid secretion, primary bile acid biosynthesis, and biotin and cholesterol metabolism. In conclusion, TRF supplementation in HFD-fed mice affects antioxidant activities, and more interestingly, TRF also acts as a signaling molecule that is possibly involved in several bile acid-related biochemical pathways accompanied by an increase in cardiac fxr shp expression. This study provides new insight into TRF in deregulating bile acid receptors and metabolites in high-fat diet-fed mice. © The Author(s) 2024.
publisher BioMed Central Ltd
issn 15558932
language English
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accesstype All Open Access; Gold Open Access
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