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Gallic Acid Alleviates Gut Dysfunction and Boosts Immune and Antioxidant Activities in Puppies Under Environmental Stress Based on Microbiome–Metabolomics Analysis

Early-life exposure to environmental stress disrupts the gut barrier and leads to inflammatory responses and changes in gut microbiota composition. Gallic acid (GA), a natural plant polyphenol, has received significant interest for its antioxidant, anti-inflammatory, and antimicrobial properties tha...

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Autores principales: Yang, Kang, Deng, Xiaolin, Jian, Shiyan, Zhang, Meiyu, Wen, Chaoyu, Xin, Zhongquan, Zhang, Limeng, Tong, Aorigeile, Ye, Shibin, Liao, Pinfeng, Xiao, Zaili, He, Shansong, Zhang, Fan, Deng, Jinping, Zhang, Lingna, Deng, Baichuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8795593/
https://www.ncbi.nlm.nih.gov/pubmed/35095912
http://dx.doi.org/10.3389/fimmu.2021.813890
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author Yang, Kang
Deng, Xiaolin
Jian, Shiyan
Zhang, Meiyu
Wen, Chaoyu
Xin, Zhongquan
Zhang, Limeng
Tong, Aorigeile
Ye, Shibin
Liao, Pinfeng
Xiao, Zaili
He, Shansong
Zhang, Fan
Deng, Jinping
Zhang, Lingna
Deng, Baichuan
author_facet Yang, Kang
Deng, Xiaolin
Jian, Shiyan
Zhang, Meiyu
Wen, Chaoyu
Xin, Zhongquan
Zhang, Limeng
Tong, Aorigeile
Ye, Shibin
Liao, Pinfeng
Xiao, Zaili
He, Shansong
Zhang, Fan
Deng, Jinping
Zhang, Lingna
Deng, Baichuan
author_sort Yang, Kang
collection PubMed
description Early-life exposure to environmental stress disrupts the gut barrier and leads to inflammatory responses and changes in gut microbiota composition. Gallic acid (GA), a natural plant polyphenol, has received significant interest for its antioxidant, anti-inflammatory, and antimicrobial properties that support the maintenance of intestinal health. To assess whether dietary supplementation of GA alleviates environmental stress, a total of 19 puppies were randomly allocated to the following three dietary treatments for 2 weeks: 1) basal diet (control (CON)); 2) basal diet + transportation (TS); and 3) basal diet with the addition of 500 mg/kg of GA + transportation (TS+GA). After a 1-week supplementation period, puppies in the TS and TS+GA groups were transported from a stressful environment to another livable location, and puppies in the CON group were then left in the stressful environment. Results indicated that GA markedly reduced the diarrhea rate in puppies throughout the trial period and caused a moderate decline of serum cortisol and HSP-70 levels after transportation. Also, GA alleviated the oxidative stress and inflammatory response caused by multiple environmental stressors. Meanwhile, puppies fed GA had a higher abundance of fecal Firmicutes and Lactobacillus and lower Proteobacteria, Escherichia–Shigella, and Clostridium_sensu_stricto_1 after transportation. As a result, the TS+GA group had the highest total short-chain fatty acids and acetic acid. Also, the fecal and serum metabolomics analyses revealed that GA markedly reversed the abnormalities of amino acid metabolism, lipid metabolism, carbohydrate metabolism, and nucleotide metabolism caused by stresses. Finally, Spearman’s correlation analysis was carried out to explore the comprehensive microbiota and metabolite relationships. Overall, dietary supplementation of GA alleviates oxidative stress and inflammatory response in stressed puppies by causing beneficial shifts on gut microbiota and metabolites that may support gut and host health.
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spelling pubmed-87955932022-01-29 Gallic Acid Alleviates Gut Dysfunction and Boosts Immune and Antioxidant Activities in Puppies Under Environmental Stress Based on Microbiome–Metabolomics Analysis Yang, Kang Deng, Xiaolin Jian, Shiyan Zhang, Meiyu Wen, Chaoyu Xin, Zhongquan Zhang, Limeng Tong, Aorigeile Ye, Shibin Liao, Pinfeng Xiao, Zaili He, Shansong Zhang, Fan Deng, Jinping Zhang, Lingna Deng, Baichuan Front Immunol Immunology Early-life exposure to environmental stress disrupts the gut barrier and leads to inflammatory responses and changes in gut microbiota composition. Gallic acid (GA), a natural plant polyphenol, has received significant interest for its antioxidant, anti-inflammatory, and antimicrobial properties that support the maintenance of intestinal health. To assess whether dietary supplementation of GA alleviates environmental stress, a total of 19 puppies were randomly allocated to the following three dietary treatments for 2 weeks: 1) basal diet (control (CON)); 2) basal diet + transportation (TS); and 3) basal diet with the addition of 500 mg/kg of GA + transportation (TS+GA). After a 1-week supplementation period, puppies in the TS and TS+GA groups were transported from a stressful environment to another livable location, and puppies in the CON group were then left in the stressful environment. Results indicated that GA markedly reduced the diarrhea rate in puppies throughout the trial period and caused a moderate decline of serum cortisol and HSP-70 levels after transportation. Also, GA alleviated the oxidative stress and inflammatory response caused by multiple environmental stressors. Meanwhile, puppies fed GA had a higher abundance of fecal Firmicutes and Lactobacillus and lower Proteobacteria, Escherichia–Shigella, and Clostridium_sensu_stricto_1 after transportation. As a result, the TS+GA group had the highest total short-chain fatty acids and acetic acid. Also, the fecal and serum metabolomics analyses revealed that GA markedly reversed the abnormalities of amino acid metabolism, lipid metabolism, carbohydrate metabolism, and nucleotide metabolism caused by stresses. Finally, Spearman’s correlation analysis was carried out to explore the comprehensive microbiota and metabolite relationships. Overall, dietary supplementation of GA alleviates oxidative stress and inflammatory response in stressed puppies by causing beneficial shifts on gut microbiota and metabolites that may support gut and host health. Frontiers Media S.A. 2022-01-14 /pmc/articles/PMC8795593/ /pubmed/35095912 http://dx.doi.org/10.3389/fimmu.2021.813890 Text en Copyright © 2022 Yang, Deng, Jian, Zhang, Wen, Xin, Zhang, Tong, Ye, Liao, Xiao, He, Zhang, Deng, Zhang and Deng https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Yang, Kang
Deng, Xiaolin
Jian, Shiyan
Zhang, Meiyu
Wen, Chaoyu
Xin, Zhongquan
Zhang, Limeng
Tong, Aorigeile
Ye, Shibin
Liao, Pinfeng
Xiao, Zaili
He, Shansong
Zhang, Fan
Deng, Jinping
Zhang, Lingna
Deng, Baichuan
Gallic Acid Alleviates Gut Dysfunction and Boosts Immune and Antioxidant Activities in Puppies Under Environmental Stress Based on Microbiome–Metabolomics Analysis
title Gallic Acid Alleviates Gut Dysfunction and Boosts Immune and Antioxidant Activities in Puppies Under Environmental Stress Based on Microbiome–Metabolomics Analysis
title_full Gallic Acid Alleviates Gut Dysfunction and Boosts Immune and Antioxidant Activities in Puppies Under Environmental Stress Based on Microbiome–Metabolomics Analysis
title_fullStr Gallic Acid Alleviates Gut Dysfunction and Boosts Immune and Antioxidant Activities in Puppies Under Environmental Stress Based on Microbiome–Metabolomics Analysis
title_full_unstemmed Gallic Acid Alleviates Gut Dysfunction and Boosts Immune and Antioxidant Activities in Puppies Under Environmental Stress Based on Microbiome–Metabolomics Analysis
title_short Gallic Acid Alleviates Gut Dysfunction and Boosts Immune and Antioxidant Activities in Puppies Under Environmental Stress Based on Microbiome–Metabolomics Analysis
title_sort gallic acid alleviates gut dysfunction and boosts immune and antioxidant activities in puppies under environmental stress based on microbiome–metabolomics analysis
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8795593/
https://www.ncbi.nlm.nih.gov/pubmed/35095912
http://dx.doi.org/10.3389/fimmu.2021.813890
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