De Novo Aldehyde Formation, Increased Protein Carbonylation, and Altered Microbial Metabolism in the Hindgut of Pigs Fed Oxidized Soybean Oil Revealed by Metabolomics

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Main Authors: Junwei Zhang, Qingqing Mao, Jieyao Yuan, Brian J Kerr, Chi Chen
Format: Article
Language:English
Published: Elsevier 2025-05-01
Series:Current Developments in Nutrition
Online Access:http://www.sciencedirect.com/science/article/pii/S2475299125019407
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author Junwei Zhang
Qingqing Mao
Jieyao Yuan
Brian J Kerr
Chi Chen
author_facet Junwei Zhang
Qingqing Mao
Jieyao Yuan
Brian J Kerr
Chi Chen
author_sort Junwei Zhang
collection DOAJ
format Article
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institution DOAJ
issn 2475-2991
language English
publishDate 2025-05-01
publisher Elsevier
record_format Article
series Current Developments in Nutrition
spelling doaj-art-92a0b7997aa844c783af5b0228ffa0bb2025-08-20T03:21:52ZengElsevierCurrent Developments in Nutrition2475-29912025-05-01910648010.1016/j.cdnut.2025.106480De Novo Aldehyde Formation, Increased Protein Carbonylation, and Altered Microbial Metabolism in the Hindgut of Pigs Fed Oxidized Soybean Oil Revealed by MetabolomicsJunwei Zhang0Qingqing Mao1Jieyao Yuan2Brian J Kerr3Chi Chen4University of Minnesota Twin Cities, United StatesUniversity of Minnesota Twin Cities, United StatesUniversity of Minnesota Twin Cities, United StatesUSDA Agricultural Research Service, United StatesUniversity of Minnesota Twin Cities, United Stateshttp://www.sciencedirect.com/science/article/pii/S2475299125019407
spellingShingle Junwei Zhang
Qingqing Mao
Jieyao Yuan
Brian J Kerr
Chi Chen
De Novo Aldehyde Formation, Increased Protein Carbonylation, and Altered Microbial Metabolism in the Hindgut of Pigs Fed Oxidized Soybean Oil Revealed by Metabolomics
Current Developments in Nutrition
title De Novo Aldehyde Formation, Increased Protein Carbonylation, and Altered Microbial Metabolism in the Hindgut of Pigs Fed Oxidized Soybean Oil Revealed by Metabolomics
title_full De Novo Aldehyde Formation, Increased Protein Carbonylation, and Altered Microbial Metabolism in the Hindgut of Pigs Fed Oxidized Soybean Oil Revealed by Metabolomics
title_fullStr De Novo Aldehyde Formation, Increased Protein Carbonylation, and Altered Microbial Metabolism in the Hindgut of Pigs Fed Oxidized Soybean Oil Revealed by Metabolomics
title_full_unstemmed De Novo Aldehyde Formation, Increased Protein Carbonylation, and Altered Microbial Metabolism in the Hindgut of Pigs Fed Oxidized Soybean Oil Revealed by Metabolomics
title_short De Novo Aldehyde Formation, Increased Protein Carbonylation, and Altered Microbial Metabolism in the Hindgut of Pigs Fed Oxidized Soybean Oil Revealed by Metabolomics
title_sort de novo aldehyde formation increased protein carbonylation and altered microbial metabolism in the hindgut of pigs fed oxidized soybean oil revealed by metabolomics
url http://www.sciencedirect.com/science/article/pii/S2475299125019407
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AT qingqingmao denovoaldehydeformationincreasedproteincarbonylationandalteredmicrobialmetabolisminthehindgutofpigsfedoxidizedsoybeanoilrevealedbymetabolomics
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