Cargando…

The Role of Polyphenols in Regulation of Heat Shock Proteins and Gut Microbiota in Weaning Stress

Gut microbiota is the natural residents of the intestinal ecosystem which display multiple functions that provide beneficial effects on host physiology. Disturbances in gut microbiota in weaning stress are regulated by the immune system and oxidative stress-related protein pathways. Weaning stress a...

Descripción completa

Detalles Bibliográficos
Autores principales: Hussain, Tarique, Wang, Jing, Murtaza, Ghulam, Metwally, Elsayed, Yang, Huansheng, Kalhoro, Muhammad Saleem, Kalhoro, Dildar Hussain, Rahu, Baban Ali, Tan, Bie, Sahito, Raja Ghazanfar Ali, Chughtai, Muhammad Ismail, Yin, Yulong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8440081/
https://www.ncbi.nlm.nih.gov/pubmed/34531940
http://dx.doi.org/10.1155/2021/6676444
_version_ 1783752637371383808
author Hussain, Tarique
Wang, Jing
Murtaza, Ghulam
Metwally, Elsayed
Yang, Huansheng
Kalhoro, Muhammad Saleem
Kalhoro, Dildar Hussain
Rahu, Baban Ali
Tan, Bie
Sahito, Raja Ghazanfar Ali
Chughtai, Muhammad Ismail
Yin, Yulong
author_facet Hussain, Tarique
Wang, Jing
Murtaza, Ghulam
Metwally, Elsayed
Yang, Huansheng
Kalhoro, Muhammad Saleem
Kalhoro, Dildar Hussain
Rahu, Baban Ali
Tan, Bie
Sahito, Raja Ghazanfar Ali
Chughtai, Muhammad Ismail
Yin, Yulong
author_sort Hussain, Tarique
collection PubMed
description Gut microbiota is the natural residents of the intestinal ecosystem which display multiple functions that provide beneficial effects on host physiology. Disturbances in gut microbiota in weaning stress are regulated by the immune system and oxidative stress-related protein pathways. Weaning stress also alters gut microbiota response, limits digestibility, and influences animal productive performance through the production of inflammatory molecules. Heat shock proteins are the molecular chaperones that perform array functions from physiological to pathological point of view and remodeling cellular stress response. As it is involved in the defense mechanism, polyphenols ensure cellular tolerance against enormous stimuli. Polyphenols are nature-blessed compounds that show their existence in plenty of amounts. Due to their wider availability and popularity, they can exert strong immunomodulatory, antioxidative, and anti-inflammatory activities. Their promising health-promoting effects have been demonstrated in different cellular and animal studies. Dietary interventions with polyphenols may alter the gut microbiome response and attenuate the weaning stress related to inflammation. Further, polyphenols elicit health-favored effects through ameliorating inflammatory processes to improve digestibility and thereby exert a protective effect on animal production. Here, in this article, we will expand the role of dietary polyphenol intervention strategies in weaning stress which perturbs gut microbiota function and also paid emphasis to heat shock proteins in gut health. This review article gives new direction to the feed industry to formulate diet containing polyphenols which would have a significant impact on animal health.
format Online
Article
Text
id pubmed-8440081
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-84400812021-09-15 The Role of Polyphenols in Regulation of Heat Shock Proteins and Gut Microbiota in Weaning Stress Hussain, Tarique Wang, Jing Murtaza, Ghulam Metwally, Elsayed Yang, Huansheng Kalhoro, Muhammad Saleem Kalhoro, Dildar Hussain Rahu, Baban Ali Tan, Bie Sahito, Raja Ghazanfar Ali Chughtai, Muhammad Ismail Yin, Yulong Oxid Med Cell Longev Review Article Gut microbiota is the natural residents of the intestinal ecosystem which display multiple functions that provide beneficial effects on host physiology. Disturbances in gut microbiota in weaning stress are regulated by the immune system and oxidative stress-related protein pathways. Weaning stress also alters gut microbiota response, limits digestibility, and influences animal productive performance through the production of inflammatory molecules. Heat shock proteins are the molecular chaperones that perform array functions from physiological to pathological point of view and remodeling cellular stress response. As it is involved in the defense mechanism, polyphenols ensure cellular tolerance against enormous stimuli. Polyphenols are nature-blessed compounds that show their existence in plenty of amounts. Due to their wider availability and popularity, they can exert strong immunomodulatory, antioxidative, and anti-inflammatory activities. Their promising health-promoting effects have been demonstrated in different cellular and animal studies. Dietary interventions with polyphenols may alter the gut microbiome response and attenuate the weaning stress related to inflammation. Further, polyphenols elicit health-favored effects through ameliorating inflammatory processes to improve digestibility and thereby exert a protective effect on animal production. Here, in this article, we will expand the role of dietary polyphenol intervention strategies in weaning stress which perturbs gut microbiota function and also paid emphasis to heat shock proteins in gut health. This review article gives new direction to the feed industry to formulate diet containing polyphenols which would have a significant impact on animal health. Hindawi 2021-09-06 /pmc/articles/PMC8440081/ /pubmed/34531940 http://dx.doi.org/10.1155/2021/6676444 Text en Copyright © 2021 Tarique Hussain et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Review Article
Hussain, Tarique
Wang, Jing
Murtaza, Ghulam
Metwally, Elsayed
Yang, Huansheng
Kalhoro, Muhammad Saleem
Kalhoro, Dildar Hussain
Rahu, Baban Ali
Tan, Bie
Sahito, Raja Ghazanfar Ali
Chughtai, Muhammad Ismail
Yin, Yulong
The Role of Polyphenols in Regulation of Heat Shock Proteins and Gut Microbiota in Weaning Stress
title The Role of Polyphenols in Regulation of Heat Shock Proteins and Gut Microbiota in Weaning Stress
title_full The Role of Polyphenols in Regulation of Heat Shock Proteins and Gut Microbiota in Weaning Stress
title_fullStr The Role of Polyphenols in Regulation of Heat Shock Proteins and Gut Microbiota in Weaning Stress
title_full_unstemmed The Role of Polyphenols in Regulation of Heat Shock Proteins and Gut Microbiota in Weaning Stress
title_short The Role of Polyphenols in Regulation of Heat Shock Proteins and Gut Microbiota in Weaning Stress
title_sort role of polyphenols in regulation of heat shock proteins and gut microbiota in weaning stress
topic Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8440081/
https://www.ncbi.nlm.nih.gov/pubmed/34531940
http://dx.doi.org/10.1155/2021/6676444
work_keys_str_mv AT hussaintarique theroleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT wangjing theroleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT murtazaghulam theroleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT metwallyelsayed theroleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT yanghuansheng theroleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT kalhoromuhammadsaleem theroleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT kalhorodildarhussain theroleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT rahubabanali theroleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT tanbie theroleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT sahitorajaghazanfarali theroleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT chughtaimuhammadismail theroleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT yinyulong theroleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT hussaintarique roleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT wangjing roleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT murtazaghulam roleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT metwallyelsayed roleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT yanghuansheng roleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT kalhoromuhammadsaleem roleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT kalhorodildarhussain roleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT rahubabanali roleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT tanbie roleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT sahitorajaghazanfarali roleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT chughtaimuhammadismail roleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress
AT yinyulong roleofpolyphenolsinregulationofheatshockproteinsandgutmicrobiotainweaningstress