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Unveiling the interplay between NSAID-induced dysbiosis and autoimmune liver disease in children: insights into the hidden gateway to autism spectrum disorders. Evidence from ex vivo, in vivo, and clinical studies

Autism spectrum disorders (ASD) represent a diverse group of neuropsychiatric conditions, and recent evidence has suggested a connection between ASD and microbial dysbiosis. Immune and gastrointestinal dysfunction are associated with dysbiosis, and there are indications that modulating the microbiot...

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Autores principales: Mohamed, Doaa I., Abo Nahas, Hebatallah H., Elshaer, Asmaa M., El-Waseef, Dalia Alaa El-Din Aly, El-Kharashi, Omnyah A., Mohamed, Soha M. Y., Sabry, Yasmine Gamal, Almaimani, Riyad A., Almasmoum, Hussain A., Altamimi, Abdulmalik S., Ibrahim, Ibrahim Abdel Aziz, Alshawwa, Samar Z., Jaremko, Mariusz, Emwas, Abdul-Hamid, Saied, Essa M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10644687/
https://www.ncbi.nlm.nih.gov/pubmed/38026692
http://dx.doi.org/10.3389/fncel.2023.1268126
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author Mohamed, Doaa I.
Abo Nahas, Hebatallah H.
Elshaer, Asmaa M.
El-Waseef, Dalia Alaa El-Din Aly
El-Kharashi, Omnyah A.
Mohamed, Soha M. Y.
Sabry, Yasmine Gamal
Almaimani, Riyad A.
Almasmoum, Hussain A.
Altamimi, Abdulmalik S.
Ibrahim, Ibrahim Abdel Aziz
Alshawwa, Samar Z.
Jaremko, Mariusz
Emwas, Abdul-Hamid
Saied, Essa M.
author_facet Mohamed, Doaa I.
Abo Nahas, Hebatallah H.
Elshaer, Asmaa M.
El-Waseef, Dalia Alaa El-Din Aly
El-Kharashi, Omnyah A.
Mohamed, Soha M. Y.
Sabry, Yasmine Gamal
Almaimani, Riyad A.
Almasmoum, Hussain A.
Altamimi, Abdulmalik S.
Ibrahim, Ibrahim Abdel Aziz
Alshawwa, Samar Z.
Jaremko, Mariusz
Emwas, Abdul-Hamid
Saied, Essa M.
author_sort Mohamed, Doaa I.
collection PubMed
description Autism spectrum disorders (ASD) represent a diverse group of neuropsychiatric conditions, and recent evidence has suggested a connection between ASD and microbial dysbiosis. Immune and gastrointestinal dysfunction are associated with dysbiosis, and there are indications that modulating the microbiota could improve ASD-related behaviors. Additionally, recent findings highlighted the significant impact of microbiota on the development of autoimmune liver diseases, and the occurrence of autoimmune liver disease in children with ASD is noteworthy. In the present study, we conducted both an in vivo study and a clinical study to explore the relationship between indomethacin-induced dysbiosis, autoimmune hepatitis (AIH), and the development of ASD. Our results revealed that indomethacin administration induced intestinal dysbiosis and bacterial translocation, confirmed by microbiological analysis showing positive bacterial translocation in blood cultures. Furthermore, indomethacin administration led to disturbed intestinal permeability, evidenced by the activation of the NLRP3 inflammasomes pathway and elevation of downstream biomarkers (TLR4, IL18, caspase 1). The histological analysis supported these findings, showing widened intestinal tight junctions, decreased mucosal thickness, inflammatory cell infiltrates, and collagen deposition. Additionally, the disturbance of intestinal permeability was associated with immune activation in liver tissue and the development of AIH, as indicated by altered liver function, elevated ASMA and ANA in serum, and histological markers of autoimmune hepatitis. These results indicate that NSAID-induced intestinal dysbiosis and AIH are robust triggers for ASD existence. These findings were further confirmed by conducting a clinical study that involved children with ASD, autoimmune hepatitis (AIH), and a history of NSAID intake. Children exposed to NSAIDs in early life and complicated by dysbiosis and AIH exhibited elevated serum levels of NLRP3, IL18, liver enzymes, ASMA, ANA, JAK1, and IL6. Further, the correlation analysis demonstrated a positive relationship between the measured parameters and the severity of ASD. Our findings suggest a potential link between NSAIDs, dysbiosis-induced AIH, and the development of ASD. The identified markers hold promise as indicators for early diagnosis and prognosis of ASD. This research highlights the importance of maintaining healthy gut microbiota and supports the necessity for further investigation into the role of dysbiosis and AIH in the etiology of ASD.
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spelling pubmed-106446872023-01-01 Unveiling the interplay between NSAID-induced dysbiosis and autoimmune liver disease in children: insights into the hidden gateway to autism spectrum disorders. Evidence from ex vivo, in vivo, and clinical studies Mohamed, Doaa I. Abo Nahas, Hebatallah H. Elshaer, Asmaa M. El-Waseef, Dalia Alaa El-Din Aly El-Kharashi, Omnyah A. Mohamed, Soha M. Y. Sabry, Yasmine Gamal Almaimani, Riyad A. Almasmoum, Hussain A. Altamimi, Abdulmalik S. Ibrahim, Ibrahim Abdel Aziz Alshawwa, Samar Z. Jaremko, Mariusz Emwas, Abdul-Hamid Saied, Essa M. Front Cell Neurosci Cellular Neuroscience Autism spectrum disorders (ASD) represent a diverse group of neuropsychiatric conditions, and recent evidence has suggested a connection between ASD and microbial dysbiosis. Immune and gastrointestinal dysfunction are associated with dysbiosis, and there are indications that modulating the microbiota could improve ASD-related behaviors. Additionally, recent findings highlighted the significant impact of microbiota on the development of autoimmune liver diseases, and the occurrence of autoimmune liver disease in children with ASD is noteworthy. In the present study, we conducted both an in vivo study and a clinical study to explore the relationship between indomethacin-induced dysbiosis, autoimmune hepatitis (AIH), and the development of ASD. Our results revealed that indomethacin administration induced intestinal dysbiosis and bacterial translocation, confirmed by microbiological analysis showing positive bacterial translocation in blood cultures. Furthermore, indomethacin administration led to disturbed intestinal permeability, evidenced by the activation of the NLRP3 inflammasomes pathway and elevation of downstream biomarkers (TLR4, IL18, caspase 1). The histological analysis supported these findings, showing widened intestinal tight junctions, decreased mucosal thickness, inflammatory cell infiltrates, and collagen deposition. Additionally, the disturbance of intestinal permeability was associated with immune activation in liver tissue and the development of AIH, as indicated by altered liver function, elevated ASMA and ANA in serum, and histological markers of autoimmune hepatitis. These results indicate that NSAID-induced intestinal dysbiosis and AIH are robust triggers for ASD existence. These findings were further confirmed by conducting a clinical study that involved children with ASD, autoimmune hepatitis (AIH), and a history of NSAID intake. Children exposed to NSAIDs in early life and complicated by dysbiosis and AIH exhibited elevated serum levels of NLRP3, IL18, liver enzymes, ASMA, ANA, JAK1, and IL6. Further, the correlation analysis demonstrated a positive relationship between the measured parameters and the severity of ASD. Our findings suggest a potential link between NSAIDs, dysbiosis-induced AIH, and the development of ASD. The identified markers hold promise as indicators for early diagnosis and prognosis of ASD. This research highlights the importance of maintaining healthy gut microbiota and supports the necessity for further investigation into the role of dysbiosis and AIH in the etiology of ASD. Frontiers Media S.A. 2023-10-31 /pmc/articles/PMC10644687/ /pubmed/38026692 http://dx.doi.org/10.3389/fncel.2023.1268126 Text en Copyright © 2023 Mohamed, Abo Nahas, Elshaer, El-Waseef, El-Kharashi, Mohamed, Sabry, Almaimani, Almasmoum, Altamimi, Ibrahim, Alshawwa, Jaremko, Emwas and M. Saied. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cellular Neuroscience
Mohamed, Doaa I.
Abo Nahas, Hebatallah H.
Elshaer, Asmaa M.
El-Waseef, Dalia Alaa El-Din Aly
El-Kharashi, Omnyah A.
Mohamed, Soha M. Y.
Sabry, Yasmine Gamal
Almaimani, Riyad A.
Almasmoum, Hussain A.
Altamimi, Abdulmalik S.
Ibrahim, Ibrahim Abdel Aziz
Alshawwa, Samar Z.
Jaremko, Mariusz
Emwas, Abdul-Hamid
Saied, Essa M.
Unveiling the interplay between NSAID-induced dysbiosis and autoimmune liver disease in children: insights into the hidden gateway to autism spectrum disorders. Evidence from ex vivo, in vivo, and clinical studies
title Unveiling the interplay between NSAID-induced dysbiosis and autoimmune liver disease in children: insights into the hidden gateway to autism spectrum disorders. Evidence from ex vivo, in vivo, and clinical studies
title_full Unveiling the interplay between NSAID-induced dysbiosis and autoimmune liver disease in children: insights into the hidden gateway to autism spectrum disorders. Evidence from ex vivo, in vivo, and clinical studies
title_fullStr Unveiling the interplay between NSAID-induced dysbiosis and autoimmune liver disease in children: insights into the hidden gateway to autism spectrum disorders. Evidence from ex vivo, in vivo, and clinical studies
title_full_unstemmed Unveiling the interplay between NSAID-induced dysbiosis and autoimmune liver disease in children: insights into the hidden gateway to autism spectrum disorders. Evidence from ex vivo, in vivo, and clinical studies
title_short Unveiling the interplay between NSAID-induced dysbiosis and autoimmune liver disease in children: insights into the hidden gateway to autism spectrum disorders. Evidence from ex vivo, in vivo, and clinical studies
title_sort unveiling the interplay between nsaid-induced dysbiosis and autoimmune liver disease in children: insights into the hidden gateway to autism spectrum disorders. evidence from ex vivo, in vivo, and clinical studies
topic Cellular Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10644687/
https://www.ncbi.nlm.nih.gov/pubmed/38026692
http://dx.doi.org/10.3389/fncel.2023.1268126
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