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Biomimetic superabsorbent hydrogel acts as a gut protective dynamic exoskeleton improving metabolic parameters and expanding A. muciniphila

The rising prevalence of obesity and metabolic disorders worldwide highlights the urgent need to find new long-term and clinically meaningful weight-loss therapies. Here, we evaluate the therapeutic potential and the mechanism of action of a biomimetic cellulose-based oral superabsorbent hydrogel (O...

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Autores principales: Silvestri, Alessandra, Gil-Gomez, Antonio, Vitale, Milena, Braga, Daniele, Demitri, Christian, Brescia, Paola, Madaghiele, Marta, Spadoni, Ilaria, Jones, Bryan, Fornasa, Giulia, Mouries, Juliette, Carloni, Sara, Lizier, Michela, Romero-Gomez, Manuel, Penna, Giuseppe, Sannino, Alessandro, Rescigno, Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10591066/
https://www.ncbi.nlm.nih.gov/pubmed/37852177
http://dx.doi.org/10.1016/j.xcrm.2023.101235
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author Silvestri, Alessandra
Gil-Gomez, Antonio
Vitale, Milena
Braga, Daniele
Demitri, Christian
Brescia, Paola
Madaghiele, Marta
Spadoni, Ilaria
Jones, Bryan
Fornasa, Giulia
Mouries, Juliette
Carloni, Sara
Lizier, Michela
Romero-Gomez, Manuel
Penna, Giuseppe
Sannino, Alessandro
Rescigno, Maria
author_facet Silvestri, Alessandra
Gil-Gomez, Antonio
Vitale, Milena
Braga, Daniele
Demitri, Christian
Brescia, Paola
Madaghiele, Marta
Spadoni, Ilaria
Jones, Bryan
Fornasa, Giulia
Mouries, Juliette
Carloni, Sara
Lizier, Michela
Romero-Gomez, Manuel
Penna, Giuseppe
Sannino, Alessandro
Rescigno, Maria
author_sort Silvestri, Alessandra
collection PubMed
description The rising prevalence of obesity and metabolic disorders worldwide highlights the urgent need to find new long-term and clinically meaningful weight-loss therapies. Here, we evaluate the therapeutic potential and the mechanism of action of a biomimetic cellulose-based oral superabsorbent hydrogel (OSH). Treatment with OSH exerts effects on intestinal tissue and gut microbiota composition, functioning like a protective dynamic exoskeleton. It protects from gut barrier permeability disruption and induces rapid and consistent changes in the gut microbiota composition, specifically fostering Akkermansia muciniphila expansion. The mechanobiological, physical, and chemical structures of the gel are required for A. muciniphila growth. OSH treatment induces weight loss and reduces fat accumulation, in both preventative and therapeutic settings. OSH usage also prevents liver steatosis, immune infiltration, and fibrosis, limiting the progression of non-alcoholic fatty liver disease. Our work shows the potential of using OSH as a non-systemic mechanobiological approach to treat metabolic syndrome and its comorbidities.
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spelling pubmed-105910662023-10-24 Biomimetic superabsorbent hydrogel acts as a gut protective dynamic exoskeleton improving metabolic parameters and expanding A. muciniphila Silvestri, Alessandra Gil-Gomez, Antonio Vitale, Milena Braga, Daniele Demitri, Christian Brescia, Paola Madaghiele, Marta Spadoni, Ilaria Jones, Bryan Fornasa, Giulia Mouries, Juliette Carloni, Sara Lizier, Michela Romero-Gomez, Manuel Penna, Giuseppe Sannino, Alessandro Rescigno, Maria Cell Rep Med Article The rising prevalence of obesity and metabolic disorders worldwide highlights the urgent need to find new long-term and clinically meaningful weight-loss therapies. Here, we evaluate the therapeutic potential and the mechanism of action of a biomimetic cellulose-based oral superabsorbent hydrogel (OSH). Treatment with OSH exerts effects on intestinal tissue and gut microbiota composition, functioning like a protective dynamic exoskeleton. It protects from gut barrier permeability disruption and induces rapid and consistent changes in the gut microbiota composition, specifically fostering Akkermansia muciniphila expansion. The mechanobiological, physical, and chemical structures of the gel are required for A. muciniphila growth. OSH treatment induces weight loss and reduces fat accumulation, in both preventative and therapeutic settings. OSH usage also prevents liver steatosis, immune infiltration, and fibrosis, limiting the progression of non-alcoholic fatty liver disease. Our work shows the potential of using OSH as a non-systemic mechanobiological approach to treat metabolic syndrome and its comorbidities. Elsevier 2023-10-17 /pmc/articles/PMC10591066/ /pubmed/37852177 http://dx.doi.org/10.1016/j.xcrm.2023.101235 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Silvestri, Alessandra
Gil-Gomez, Antonio
Vitale, Milena
Braga, Daniele
Demitri, Christian
Brescia, Paola
Madaghiele, Marta
Spadoni, Ilaria
Jones, Bryan
Fornasa, Giulia
Mouries, Juliette
Carloni, Sara
Lizier, Michela
Romero-Gomez, Manuel
Penna, Giuseppe
Sannino, Alessandro
Rescigno, Maria
Biomimetic superabsorbent hydrogel acts as a gut protective dynamic exoskeleton improving metabolic parameters and expanding A. muciniphila
title Biomimetic superabsorbent hydrogel acts as a gut protective dynamic exoskeleton improving metabolic parameters and expanding A. muciniphila
title_full Biomimetic superabsorbent hydrogel acts as a gut protective dynamic exoskeleton improving metabolic parameters and expanding A. muciniphila
title_fullStr Biomimetic superabsorbent hydrogel acts as a gut protective dynamic exoskeleton improving metabolic parameters and expanding A. muciniphila
title_full_unstemmed Biomimetic superabsorbent hydrogel acts as a gut protective dynamic exoskeleton improving metabolic parameters and expanding A. muciniphila
title_short Biomimetic superabsorbent hydrogel acts as a gut protective dynamic exoskeleton improving metabolic parameters and expanding A. muciniphila
title_sort biomimetic superabsorbent hydrogel acts as a gut protective dynamic exoskeleton improving metabolic parameters and expanding a. muciniphila
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10591066/
https://www.ncbi.nlm.nih.gov/pubmed/37852177
http://dx.doi.org/10.1016/j.xcrm.2023.101235
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