Cargando…
Dietary chenodeoxycholic acid improves growth performance and intestinal health by altering serum metabolic profiles and gut bacteria in weaned piglets
Nutritional diarrhea and subsequent performance degradation in weaned piglets are major challenges for the pig industry. Bile acids (BA) can be added to the diet as emulsifiers. This experiment was conducted to investigate the effects of chenodeoxycholic acid (CDCA), a major primary BA, on growth pe...
Autores principales: | , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
KeAi Publishing
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8245770/ https://www.ncbi.nlm.nih.gov/pubmed/34258424 http://dx.doi.org/10.1016/j.aninu.2020.07.011 |
_version_ | 1783716181231796224 |
---|---|
author | Song, Min Zhang, Fenglin Chen, Lin Yang, Qiang Su, Han Yang, Xiaohua He, Haiwen Ling, Mingfa Zheng, Jisong Duan, Chen Lai, Xumin Pan, Mushui Zhu, Xiaotong Wang, Lina Gao, Ping Shu, Gang Jiang, Qingyan Wang, Songbo |
author_facet | Song, Min Zhang, Fenglin Chen, Lin Yang, Qiang Su, Han Yang, Xiaohua He, Haiwen Ling, Mingfa Zheng, Jisong Duan, Chen Lai, Xumin Pan, Mushui Zhu, Xiaotong Wang, Lina Gao, Ping Shu, Gang Jiang, Qingyan Wang, Songbo |
author_sort | Song, Min |
collection | PubMed |
description | Nutritional diarrhea and subsequent performance degradation in weaned piglets are major challenges for the pig industry. Bile acids (BA) can be added to the diet as emulsifiers. This experiment was conducted to investigate the effects of chenodeoxycholic acid (CDCA), a major primary BA, on growth performance, serum metabolic profiles and gut health in weaned piglets. A total of 72 healthy weaned piglets were randomly assigned to the control (CON) and the CDCA groups, which were feed a basal diet and the basal diet supplemented with 200 mg/kg CDCA for 30 d, respectively. Our results demonstrated that CDCA significantly increased final BW and average daily gain (ADG), decreased feed-to-gain (F:G) ratio and tended to reduce diarrhea incidence. In addition, CDCA increased the villus height-to-crypt depth (V:C) ratio, elevated goblet cell numbers and the expression of tight junction proteins, suggesting the enhancement of intestinal barrier function. As an emulsifier, CDCA increased jejunal lipase activity and the mRNA expression of pancreatic lipases. CDCA supplementation also altered the serum metabolic profiles, including increasing the levels of indole 3-acetic acid, N′-formylkynurenine and theobromine that were beneficial for gut health. Moreover, the relative abundance of 2 beneficial gut bacteria, Prevotella9 and PrevotellaceaeTCG-001, were increased, whereas the relative abundance of a harmful bacteria, Dorea, was decreased in the gut of weaned piglets supplemented with CDCA. Importantly, the altered serum metabolic profiles showed a strong correlation with the changed gut bacteria. In conclusion, CDCA improved the growth performance of weaned piglets by improving intestinal morphology and barrier function, and enhancing lipid digestion, accompanied by alterations of serum metabolic profiles, and changes in relative abundance of certain gut bacteria. |
format | Online Article Text |
id | pubmed-8245770 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | KeAi Publishing |
record_format | MEDLINE/PubMed |
spelling | pubmed-82457702021-07-12 Dietary chenodeoxycholic acid improves growth performance and intestinal health by altering serum metabolic profiles and gut bacteria in weaned piglets Song, Min Zhang, Fenglin Chen, Lin Yang, Qiang Su, Han Yang, Xiaohua He, Haiwen Ling, Mingfa Zheng, Jisong Duan, Chen Lai, Xumin Pan, Mushui Zhu, Xiaotong Wang, Lina Gao, Ping Shu, Gang Jiang, Qingyan Wang, Songbo Anim Nutr Original Research Article Nutritional diarrhea and subsequent performance degradation in weaned piglets are major challenges for the pig industry. Bile acids (BA) can be added to the diet as emulsifiers. This experiment was conducted to investigate the effects of chenodeoxycholic acid (CDCA), a major primary BA, on growth performance, serum metabolic profiles and gut health in weaned piglets. A total of 72 healthy weaned piglets were randomly assigned to the control (CON) and the CDCA groups, which were feed a basal diet and the basal diet supplemented with 200 mg/kg CDCA for 30 d, respectively. Our results demonstrated that CDCA significantly increased final BW and average daily gain (ADG), decreased feed-to-gain (F:G) ratio and tended to reduce diarrhea incidence. In addition, CDCA increased the villus height-to-crypt depth (V:C) ratio, elevated goblet cell numbers and the expression of tight junction proteins, suggesting the enhancement of intestinal barrier function. As an emulsifier, CDCA increased jejunal lipase activity and the mRNA expression of pancreatic lipases. CDCA supplementation also altered the serum metabolic profiles, including increasing the levels of indole 3-acetic acid, N′-formylkynurenine and theobromine that were beneficial for gut health. Moreover, the relative abundance of 2 beneficial gut bacteria, Prevotella9 and PrevotellaceaeTCG-001, were increased, whereas the relative abundance of a harmful bacteria, Dorea, was decreased in the gut of weaned piglets supplemented with CDCA. Importantly, the altered serum metabolic profiles showed a strong correlation with the changed gut bacteria. In conclusion, CDCA improved the growth performance of weaned piglets by improving intestinal morphology and barrier function, and enhancing lipid digestion, accompanied by alterations of serum metabolic profiles, and changes in relative abundance of certain gut bacteria. KeAi Publishing 2021-06 2021-04-19 /pmc/articles/PMC8245770/ /pubmed/34258424 http://dx.doi.org/10.1016/j.aninu.2020.07.011 Text en © 2021 Chinese Association of Animal Science and Veterinary Medicine. Publishing services by Elsevier B.V. on behalf of KeAi Communications Co. Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). |
spellingShingle | Original Research Article Song, Min Zhang, Fenglin Chen, Lin Yang, Qiang Su, Han Yang, Xiaohua He, Haiwen Ling, Mingfa Zheng, Jisong Duan, Chen Lai, Xumin Pan, Mushui Zhu, Xiaotong Wang, Lina Gao, Ping Shu, Gang Jiang, Qingyan Wang, Songbo Dietary chenodeoxycholic acid improves growth performance and intestinal health by altering serum metabolic profiles and gut bacteria in weaned piglets |
title | Dietary chenodeoxycholic acid improves growth performance and intestinal health by altering serum metabolic profiles and gut bacteria in weaned piglets |
title_full | Dietary chenodeoxycholic acid improves growth performance and intestinal health by altering serum metabolic profiles and gut bacteria in weaned piglets |
title_fullStr | Dietary chenodeoxycholic acid improves growth performance and intestinal health by altering serum metabolic profiles and gut bacteria in weaned piglets |
title_full_unstemmed | Dietary chenodeoxycholic acid improves growth performance and intestinal health by altering serum metabolic profiles and gut bacteria in weaned piglets |
title_short | Dietary chenodeoxycholic acid improves growth performance and intestinal health by altering serum metabolic profiles and gut bacteria in weaned piglets |
title_sort | dietary chenodeoxycholic acid improves growth performance and intestinal health by altering serum metabolic profiles and gut bacteria in weaned piglets |
topic | Original Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8245770/ https://www.ncbi.nlm.nih.gov/pubmed/34258424 http://dx.doi.org/10.1016/j.aninu.2020.07.011 |
work_keys_str_mv | AT songmin dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT zhangfenglin dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT chenlin dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT yangqiang dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT suhan dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT yangxiaohua dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT hehaiwen dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT lingmingfa dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT zhengjisong dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT duanchen dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT laixumin dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT panmushui dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT zhuxiaotong dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT wanglina dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT gaoping dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT shugang dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT jiangqingyan dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets AT wangsongbo dietarychenodeoxycholicacidimprovesgrowthperformanceandintestinalhealthbyalteringserummetabolicprofilesandgutbacteriainweanedpiglets |