Cargando…

Intestinal Microbiota Remodeling Protects Mice from Western Diet-Induced Brain Inflammation and Cognitive Decline

It has been shown that the Western diet (WD) induces systemic inflammation and cognitive decline. Moreover, probiotic supplementation and antibiotic treatment reduce diet-induced hepatic inflammation. The current study examines whether shaping the gut microbes by Bifidobacterium infantis (B. infanti...

Descripción completa

Detalles Bibliográficos
Autores principales: Jena, Prasant Kumar, Setayesh, Tahereh, Sheng, Lili, Di Lucente, Jacopo, Jin, Lee Way, Wan, Yu-Jui Yvonne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8834507/
https://www.ncbi.nlm.nih.gov/pubmed/35159313
http://dx.doi.org/10.3390/cells11030504
_version_ 1784649204018184192
author Jena, Prasant Kumar
Setayesh, Tahereh
Sheng, Lili
Di Lucente, Jacopo
Jin, Lee Way
Wan, Yu-Jui Yvonne
author_facet Jena, Prasant Kumar
Setayesh, Tahereh
Sheng, Lili
Di Lucente, Jacopo
Jin, Lee Way
Wan, Yu-Jui Yvonne
author_sort Jena, Prasant Kumar
collection PubMed
description It has been shown that the Western diet (WD) induces systemic inflammation and cognitive decline. Moreover, probiotic supplementation and antibiotic treatment reduce diet-induced hepatic inflammation. The current study examines whether shaping the gut microbes by Bifidobacterium infantis (B. infantis) supplementation and antibiotic treatment reduce diet-induced brain inflammation and improve neuroplasticity. Furthermore, the significance of bile acid (BA) signaling in regulating brain inflammation was studied. Mice were fed a control diet (CD) or WD for seven months. B. infantis was supplemented to WD-fed mice to study brain inflammation, lipid, metabolomes, and neuroplasticity measured by long-term potentiation (LTP). Broad-spectrum coverage antibiotics and cholestyramine treatments were performed to study the impact of WD-associated gut microbes and BA in brain inflammation. Probiotic B. infantis supplementation inhibited diet-induced brain inflammation by reducing IL6, TNFα, and CD11b levels. B. infantis improved LTP and increased brain PSD95 and BDNF levels, which were reduced due to WD intake. Additionally, B. infantis reduced cecal cholesterol, brain ceramide and enhanced saturated fatty acids. Moreover, antibiotic treatment, as well as cholestyramine, diminished WD-induced brain inflammatory signaling. Our findings support the theory that intestinal microbiota remodeling by B. infantis reduces brain inflammation, activates BA receptor signaling, and improves neuroplasticity.
format Online
Article
Text
id pubmed-8834507
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-88345072022-02-12 Intestinal Microbiota Remodeling Protects Mice from Western Diet-Induced Brain Inflammation and Cognitive Decline Jena, Prasant Kumar Setayesh, Tahereh Sheng, Lili Di Lucente, Jacopo Jin, Lee Way Wan, Yu-Jui Yvonne Cells Article It has been shown that the Western diet (WD) induces systemic inflammation and cognitive decline. Moreover, probiotic supplementation and antibiotic treatment reduce diet-induced hepatic inflammation. The current study examines whether shaping the gut microbes by Bifidobacterium infantis (B. infantis) supplementation and antibiotic treatment reduce diet-induced brain inflammation and improve neuroplasticity. Furthermore, the significance of bile acid (BA) signaling in regulating brain inflammation was studied. Mice were fed a control diet (CD) or WD for seven months. B. infantis was supplemented to WD-fed mice to study brain inflammation, lipid, metabolomes, and neuroplasticity measured by long-term potentiation (LTP). Broad-spectrum coverage antibiotics and cholestyramine treatments were performed to study the impact of WD-associated gut microbes and BA in brain inflammation. Probiotic B. infantis supplementation inhibited diet-induced brain inflammation by reducing IL6, TNFα, and CD11b levels. B. infantis improved LTP and increased brain PSD95 and BDNF levels, which were reduced due to WD intake. Additionally, B. infantis reduced cecal cholesterol, brain ceramide and enhanced saturated fatty acids. Moreover, antibiotic treatment, as well as cholestyramine, diminished WD-induced brain inflammatory signaling. Our findings support the theory that intestinal microbiota remodeling by B. infantis reduces brain inflammation, activates BA receptor signaling, and improves neuroplasticity. MDPI 2022-02-01 /pmc/articles/PMC8834507/ /pubmed/35159313 http://dx.doi.org/10.3390/cells11030504 Text en © 2022 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
Jena, Prasant Kumar
Setayesh, Tahereh
Sheng, Lili
Di Lucente, Jacopo
Jin, Lee Way
Wan, Yu-Jui Yvonne
Intestinal Microbiota Remodeling Protects Mice from Western Diet-Induced Brain Inflammation and Cognitive Decline
title Intestinal Microbiota Remodeling Protects Mice from Western Diet-Induced Brain Inflammation and Cognitive Decline
title_full Intestinal Microbiota Remodeling Protects Mice from Western Diet-Induced Brain Inflammation and Cognitive Decline
title_fullStr Intestinal Microbiota Remodeling Protects Mice from Western Diet-Induced Brain Inflammation and Cognitive Decline
title_full_unstemmed Intestinal Microbiota Remodeling Protects Mice from Western Diet-Induced Brain Inflammation and Cognitive Decline
title_short Intestinal Microbiota Remodeling Protects Mice from Western Diet-Induced Brain Inflammation and Cognitive Decline
title_sort intestinal microbiota remodeling protects mice from western diet-induced brain inflammation and cognitive decline
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8834507/
https://www.ncbi.nlm.nih.gov/pubmed/35159313
http://dx.doi.org/10.3390/cells11030504
work_keys_str_mv AT jenaprasantkumar intestinalmicrobiotaremodelingprotectsmicefromwesterndietinducedbraininflammationandcognitivedecline
AT setayeshtahereh intestinalmicrobiotaremodelingprotectsmicefromwesterndietinducedbraininflammationandcognitivedecline
AT shenglili intestinalmicrobiotaremodelingprotectsmicefromwesterndietinducedbraininflammationandcognitivedecline
AT dilucentejacopo intestinalmicrobiotaremodelingprotectsmicefromwesterndietinducedbraininflammationandcognitivedecline
AT jinleeway intestinalmicrobiotaremodelingprotectsmicefromwesterndietinducedbraininflammationandcognitivedecline
AT wanyujuiyvonne intestinalmicrobiotaremodelingprotectsmicefromwesterndietinducedbraininflammationandcognitivedecline