Cargando…

An Integrated Bile Acids Profile Determination by UHPLC-MS/MS to Identify the Effect of Bile Acids Supplement in High Plant Protein Diet on Common Carp (Cyprinus carpio)

Bile acids (BAs) have considerable importance in the metabolism of glycolipid and cholesterol. The purpose of the present study is to clarify the effects of bile acids supplementary in a high plant protein diet for the common carp BA profiles and hepatopancreas and intestine health. An 11-week feedi...

Descripción completa

Detalles Bibliográficos
Autores principales: Wei, Xian, Yao, Ting, Fall, Fatou Ndoye, Xue, Min, Liang, Xiaofang, Wang, Jie, Du, Wenlong, Gu, Xu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8535531/
https://www.ncbi.nlm.nih.gov/pubmed/34681514
http://dx.doi.org/10.3390/foods10102465
_version_ 1784587806761287680
author Wei, Xian
Yao, Ting
Fall, Fatou Ndoye
Xue, Min
Liang, Xiaofang
Wang, Jie
Du, Wenlong
Gu, Xu
author_facet Wei, Xian
Yao, Ting
Fall, Fatou Ndoye
Xue, Min
Liang, Xiaofang
Wang, Jie
Du, Wenlong
Gu, Xu
author_sort Wei, Xian
collection PubMed
description Bile acids (BAs) have considerable importance in the metabolism of glycolipid and cholesterol. The purpose of the present study is to clarify the effects of bile acids supplementary in a high plant protein diet for the common carp BA profiles and hepatopancreas and intestine health. An 11-week feeding trial was conducted with high plant protein diet (18% soybean meal and 18% cottonseed protein concentrated) (HP) and HP added 600 mg/kg BAs (HP+BAs) for common carp, and then, the UHPLC-MS/MS technology was used to analyze the BAs in the bile and plasma of two groups. HP could induce vacuolation of hepatocytes and accumulation of glycogen in the common carp, while these phenotypes were significantly improved in the HP+BAs group. In addition, the BA profile of the HP group and HP+BAs group are described in detail, for the common carp bile with treatment by exogenous BAs, TCA, CA, TβMCA, and TωMCA were the main components. Furthermore, in the HP+BAs group plasma, CDCA, CA, LCA, and GCDCA increased significantly; they could activate TGR5, and the activation of hepatopancreas TGR5 might regulate glucose metabolism to relieve hepatopancreas glycogen accumulation. This study proved that BAs supplemented to plant protein diet could relieve the common carp hepatopancreas glycogen accumulation by changing the BAs’ profile, thereby promoting its healthy growth, which has important guiding significance for the promotion of aquaculture development and makes an important contribution to expanding the strategic space of food security.
format Online
Article
Text
id pubmed-8535531
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-85355312021-10-23 An Integrated Bile Acids Profile Determination by UHPLC-MS/MS to Identify the Effect of Bile Acids Supplement in High Plant Protein Diet on Common Carp (Cyprinus carpio) Wei, Xian Yao, Ting Fall, Fatou Ndoye Xue, Min Liang, Xiaofang Wang, Jie Du, Wenlong Gu, Xu Foods Article Bile acids (BAs) have considerable importance in the metabolism of glycolipid and cholesterol. The purpose of the present study is to clarify the effects of bile acids supplementary in a high plant protein diet for the common carp BA profiles and hepatopancreas and intestine health. An 11-week feeding trial was conducted with high plant protein diet (18% soybean meal and 18% cottonseed protein concentrated) (HP) and HP added 600 mg/kg BAs (HP+BAs) for common carp, and then, the UHPLC-MS/MS technology was used to analyze the BAs in the bile and plasma of two groups. HP could induce vacuolation of hepatocytes and accumulation of glycogen in the common carp, while these phenotypes were significantly improved in the HP+BAs group. In addition, the BA profile of the HP group and HP+BAs group are described in detail, for the common carp bile with treatment by exogenous BAs, TCA, CA, TβMCA, and TωMCA were the main components. Furthermore, in the HP+BAs group plasma, CDCA, CA, LCA, and GCDCA increased significantly; they could activate TGR5, and the activation of hepatopancreas TGR5 might regulate glucose metabolism to relieve hepatopancreas glycogen accumulation. This study proved that BAs supplemented to plant protein diet could relieve the common carp hepatopancreas glycogen accumulation by changing the BAs’ profile, thereby promoting its healthy growth, which has important guiding significance for the promotion of aquaculture development and makes an important contribution to expanding the strategic space of food security. MDPI 2021-10-15 /pmc/articles/PMC8535531/ /pubmed/34681514 http://dx.doi.org/10.3390/foods10102465 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wei, Xian
Yao, Ting
Fall, Fatou Ndoye
Xue, Min
Liang, Xiaofang
Wang, Jie
Du, Wenlong
Gu, Xu
An Integrated Bile Acids Profile Determination by UHPLC-MS/MS to Identify the Effect of Bile Acids Supplement in High Plant Protein Diet on Common Carp (Cyprinus carpio)
title An Integrated Bile Acids Profile Determination by UHPLC-MS/MS to Identify the Effect of Bile Acids Supplement in High Plant Protein Diet on Common Carp (Cyprinus carpio)
title_full An Integrated Bile Acids Profile Determination by UHPLC-MS/MS to Identify the Effect of Bile Acids Supplement in High Plant Protein Diet on Common Carp (Cyprinus carpio)
title_fullStr An Integrated Bile Acids Profile Determination by UHPLC-MS/MS to Identify the Effect of Bile Acids Supplement in High Plant Protein Diet on Common Carp (Cyprinus carpio)
title_full_unstemmed An Integrated Bile Acids Profile Determination by UHPLC-MS/MS to Identify the Effect of Bile Acids Supplement in High Plant Protein Diet on Common Carp (Cyprinus carpio)
title_short An Integrated Bile Acids Profile Determination by UHPLC-MS/MS to Identify the Effect of Bile Acids Supplement in High Plant Protein Diet on Common Carp (Cyprinus carpio)
title_sort integrated bile acids profile determination by uhplc-ms/ms to identify the effect of bile acids supplement in high plant protein diet on common carp (cyprinus carpio)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8535531/
https://www.ncbi.nlm.nih.gov/pubmed/34681514
http://dx.doi.org/10.3390/foods10102465
work_keys_str_mv AT weixian anintegratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT yaoting anintegratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT fallfatoundoye anintegratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT xuemin anintegratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT liangxiaofang anintegratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT wangjie anintegratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT duwenlong anintegratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT guxu anintegratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT weixian integratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT yaoting integratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT fallfatoundoye integratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT xuemin integratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT liangxiaofang integratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT wangjie integratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT duwenlong integratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio
AT guxu integratedbileacidsprofiledeterminationbyuhplcmsmstoidentifytheeffectofbileacidssupplementinhighplantproteindietoncommoncarpcyprinuscarpio