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The Algal Polysaccharide Ulvan and Carotenoid Astaxanthin Both Positively Modulate Gut Microbiota in Mice

The intestinal microbial community (microbiota) is dynamic and variable amongst individuals and plays an essential part in gut health and homeostasis. Dietary components can modulate the structure of the gut microbiota. In recent years, substantial efforts have been made to find novel dietary compon...

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Autores principales: Pratap, Kunal, Majzoub, Marwan E., Taki, Aya C., Hernandez, Socorro Miranda, Magnusson, Marie, Glasson, Christopher R. K., de Nys, Rocky, Thomas, Torsten, Lopata, Andreas L., Kamath, Sandip D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8871025/
https://www.ncbi.nlm.nih.gov/pubmed/35206042
http://dx.doi.org/10.3390/foods11040565
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author Pratap, Kunal
Majzoub, Marwan E.
Taki, Aya C.
Hernandez, Socorro Miranda
Magnusson, Marie
Glasson, Christopher R. K.
de Nys, Rocky
Thomas, Torsten
Lopata, Andreas L.
Kamath, Sandip D.
author_facet Pratap, Kunal
Majzoub, Marwan E.
Taki, Aya C.
Hernandez, Socorro Miranda
Magnusson, Marie
Glasson, Christopher R. K.
de Nys, Rocky
Thomas, Torsten
Lopata, Andreas L.
Kamath, Sandip D.
author_sort Pratap, Kunal
collection PubMed
description The intestinal microbial community (microbiota) is dynamic and variable amongst individuals and plays an essential part in gut health and homeostasis. Dietary components can modulate the structure of the gut microbiota. In recent years, substantial efforts have been made to find novel dietary components with positive effects on the gut microbial community structure. Natural algal polysaccharides and carotenoids have been reported to possess various functions of biological relevance and their impact on the gut microbiota is currently a topic of interest. This study, therefore, reports the effect of the sulfated polysaccharide ulvan and the carotenoid astaxanthin extracted and purified from the aquacultured marine green macroalgae Ulva ohnoi and freshwater green microalgae Haematococcus pluvialis, respectively, on the temporal development of the murine gut microbiota. Significant changes with the increase in the bacterial classes Bacteroidia, Bacilli, Clostridia, and Verrucomicrobia were observed after feeding the mice with ulvan and astaxanthin. Duration of the treatments had a more substantial effect on the bacterial community structure than the type of treatment. Our findings highlight the potential of ulvan and astaxanthin to mediate aspects of host-microbe symbiosis in the gut, and if incorporated into the diet, these could assist positively in improving disease conditions associated with gut health.
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spelling pubmed-88710252022-02-25 The Algal Polysaccharide Ulvan and Carotenoid Astaxanthin Both Positively Modulate Gut Microbiota in Mice Pratap, Kunal Majzoub, Marwan E. Taki, Aya C. Hernandez, Socorro Miranda Magnusson, Marie Glasson, Christopher R. K. de Nys, Rocky Thomas, Torsten Lopata, Andreas L. Kamath, Sandip D. Foods Article The intestinal microbial community (microbiota) is dynamic and variable amongst individuals and plays an essential part in gut health and homeostasis. Dietary components can modulate the structure of the gut microbiota. In recent years, substantial efforts have been made to find novel dietary components with positive effects on the gut microbial community structure. Natural algal polysaccharides and carotenoids have been reported to possess various functions of biological relevance and their impact on the gut microbiota is currently a topic of interest. This study, therefore, reports the effect of the sulfated polysaccharide ulvan and the carotenoid astaxanthin extracted and purified from the aquacultured marine green macroalgae Ulva ohnoi and freshwater green microalgae Haematococcus pluvialis, respectively, on the temporal development of the murine gut microbiota. Significant changes with the increase in the bacterial classes Bacteroidia, Bacilli, Clostridia, and Verrucomicrobia were observed after feeding the mice with ulvan and astaxanthin. Duration of the treatments had a more substantial effect on the bacterial community structure than the type of treatment. Our findings highlight the potential of ulvan and astaxanthin to mediate aspects of host-microbe symbiosis in the gut, and if incorporated into the diet, these could assist positively in improving disease conditions associated with gut health. MDPI 2022-02-16 /pmc/articles/PMC8871025/ /pubmed/35206042 http://dx.doi.org/10.3390/foods11040565 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
Pratap, Kunal
Majzoub, Marwan E.
Taki, Aya C.
Hernandez, Socorro Miranda
Magnusson, Marie
Glasson, Christopher R. K.
de Nys, Rocky
Thomas, Torsten
Lopata, Andreas L.
Kamath, Sandip D.
The Algal Polysaccharide Ulvan and Carotenoid Astaxanthin Both Positively Modulate Gut Microbiota in Mice
title The Algal Polysaccharide Ulvan and Carotenoid Astaxanthin Both Positively Modulate Gut Microbiota in Mice
title_full The Algal Polysaccharide Ulvan and Carotenoid Astaxanthin Both Positively Modulate Gut Microbiota in Mice
title_fullStr The Algal Polysaccharide Ulvan and Carotenoid Astaxanthin Both Positively Modulate Gut Microbiota in Mice
title_full_unstemmed The Algal Polysaccharide Ulvan and Carotenoid Astaxanthin Both Positively Modulate Gut Microbiota in Mice
title_short The Algal Polysaccharide Ulvan and Carotenoid Astaxanthin Both Positively Modulate Gut Microbiota in Mice
title_sort algal polysaccharide ulvan and carotenoid astaxanthin both positively modulate gut microbiota in mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8871025/
https://www.ncbi.nlm.nih.gov/pubmed/35206042
http://dx.doi.org/10.3390/foods11040565
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