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Andrographolide Attenuates Gut-Brain-Axis Associated Pathology in Gulf War Illness by Modulating Bacteriome-Virome Associated Inflammation and Microglia-Neuron Proinflammatory Crosstalk

Gulf War Illness (GWI) is a chronic multi-symptomatic illness that is associated with fatigue, pain, cognitive deficits, and gastrointestinal disturbances and presents a significant challenge to treat in clinics. Our previous studies show a role of an altered Gut–Brain axis pathology in disease deve...

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Autores principales: Saha, Punnag, Skidmore, Peter T., Holland, LaRinda A., Mondal, Ayan, Bose, Dipro, Seth, Ratanesh K., Sullivan, Kimberly, Janulewicz, Patricia A., Horner, Ronnie, Klimas, Nancy, Nagarkatti, Mitzi, Nagarkatti, Prakash, Lim, Efrem S., Chatterjee, Saurabh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8304847/
https://www.ncbi.nlm.nih.gov/pubmed/34356139
http://dx.doi.org/10.3390/brainsci11070905
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author Saha, Punnag
Skidmore, Peter T.
Holland, LaRinda A.
Mondal, Ayan
Bose, Dipro
Seth, Ratanesh K.
Sullivan, Kimberly
Janulewicz, Patricia A.
Horner, Ronnie
Klimas, Nancy
Nagarkatti, Mitzi
Nagarkatti, Prakash
Lim, Efrem S.
Chatterjee, Saurabh
author_facet Saha, Punnag
Skidmore, Peter T.
Holland, LaRinda A.
Mondal, Ayan
Bose, Dipro
Seth, Ratanesh K.
Sullivan, Kimberly
Janulewicz, Patricia A.
Horner, Ronnie
Klimas, Nancy
Nagarkatti, Mitzi
Nagarkatti, Prakash
Lim, Efrem S.
Chatterjee, Saurabh
author_sort Saha, Punnag
collection PubMed
description Gulf War Illness (GWI) is a chronic multi-symptomatic illness that is associated with fatigue, pain, cognitive deficits, and gastrointestinal disturbances and presents a significant challenge to treat in clinics. Our previous studies show a role of an altered Gut–Brain axis pathology in disease development and symptom persistence in GWI. The present study utilizes a mouse model of GWI to study the role of a labdane diterpenoid andrographolide (AG) to attenuate the Gut–Brain axis-linked pathology. Results showed that AG treatment in mice (100 mg/kg) via oral gavage restored bacteriome alterations, significantly increased probiotic bacteria Akkermansia, Lachnospiraceae, and Bifidobacterium, the genera that are known to aid in preserving gut and immune health. AG also corrected an altered virome with significant decreases in virome families Siphoviridae and Myoviridae known to be associated with gastrointestinal pathology. AG treatment significantly restored tight junction proteins that correlated well with decreased intestinal proinflammatory mediators IL-1β and IL-6 release. AG treatment could restore Claudin-5 levels, crucial for maintaining the BBB integrity. Notably, AG could decrease microglial activation and increase neurotrophic factor BDNF, the key to neurogenesis. Mechanistically, microglial conditioned medium generated from IL-6 stimulation with or without AG in a concentration similar to circulating levels found in the GWI mouse model and co-incubated with neuronal cells in vitro, decreased Tau phosphorylation and neuronal apoptosis. In conclusion, we show that AG treatment mitigated the Gut–Brain-Axis associated pathology in GWI and may be considered as a potential therapeutic avenue for the much-needed bench to bedside strategies in GWI.
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spelling pubmed-83048472021-07-25 Andrographolide Attenuates Gut-Brain-Axis Associated Pathology in Gulf War Illness by Modulating Bacteriome-Virome Associated Inflammation and Microglia-Neuron Proinflammatory Crosstalk Saha, Punnag Skidmore, Peter T. Holland, LaRinda A. Mondal, Ayan Bose, Dipro Seth, Ratanesh K. Sullivan, Kimberly Janulewicz, Patricia A. Horner, Ronnie Klimas, Nancy Nagarkatti, Mitzi Nagarkatti, Prakash Lim, Efrem S. Chatterjee, Saurabh Brain Sci Article Gulf War Illness (GWI) is a chronic multi-symptomatic illness that is associated with fatigue, pain, cognitive deficits, and gastrointestinal disturbances and presents a significant challenge to treat in clinics. Our previous studies show a role of an altered Gut–Brain axis pathology in disease development and symptom persistence in GWI. The present study utilizes a mouse model of GWI to study the role of a labdane diterpenoid andrographolide (AG) to attenuate the Gut–Brain axis-linked pathology. Results showed that AG treatment in mice (100 mg/kg) via oral gavage restored bacteriome alterations, significantly increased probiotic bacteria Akkermansia, Lachnospiraceae, and Bifidobacterium, the genera that are known to aid in preserving gut and immune health. AG also corrected an altered virome with significant decreases in virome families Siphoviridae and Myoviridae known to be associated with gastrointestinal pathology. AG treatment significantly restored tight junction proteins that correlated well with decreased intestinal proinflammatory mediators IL-1β and IL-6 release. AG treatment could restore Claudin-5 levels, crucial for maintaining the BBB integrity. Notably, AG could decrease microglial activation and increase neurotrophic factor BDNF, the key to neurogenesis. Mechanistically, microglial conditioned medium generated from IL-6 stimulation with or without AG in a concentration similar to circulating levels found in the GWI mouse model and co-incubated with neuronal cells in vitro, decreased Tau phosphorylation and neuronal apoptosis. In conclusion, we show that AG treatment mitigated the Gut–Brain-Axis associated pathology in GWI and may be considered as a potential therapeutic avenue for the much-needed bench to bedside strategies in GWI. MDPI 2021-07-09 /pmc/articles/PMC8304847/ /pubmed/34356139 http://dx.doi.org/10.3390/brainsci11070905 Text en © 2021 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
Saha, Punnag
Skidmore, Peter T.
Holland, LaRinda A.
Mondal, Ayan
Bose, Dipro
Seth, Ratanesh K.
Sullivan, Kimberly
Janulewicz, Patricia A.
Horner, Ronnie
Klimas, Nancy
Nagarkatti, Mitzi
Nagarkatti, Prakash
Lim, Efrem S.
Chatterjee, Saurabh
Andrographolide Attenuates Gut-Brain-Axis Associated Pathology in Gulf War Illness by Modulating Bacteriome-Virome Associated Inflammation and Microglia-Neuron Proinflammatory Crosstalk
title Andrographolide Attenuates Gut-Brain-Axis Associated Pathology in Gulf War Illness by Modulating Bacteriome-Virome Associated Inflammation and Microglia-Neuron Proinflammatory Crosstalk
title_full Andrographolide Attenuates Gut-Brain-Axis Associated Pathology in Gulf War Illness by Modulating Bacteriome-Virome Associated Inflammation and Microglia-Neuron Proinflammatory Crosstalk
title_fullStr Andrographolide Attenuates Gut-Brain-Axis Associated Pathology in Gulf War Illness by Modulating Bacteriome-Virome Associated Inflammation and Microglia-Neuron Proinflammatory Crosstalk
title_full_unstemmed Andrographolide Attenuates Gut-Brain-Axis Associated Pathology in Gulf War Illness by Modulating Bacteriome-Virome Associated Inflammation and Microglia-Neuron Proinflammatory Crosstalk
title_short Andrographolide Attenuates Gut-Brain-Axis Associated Pathology in Gulf War Illness by Modulating Bacteriome-Virome Associated Inflammation and Microglia-Neuron Proinflammatory Crosstalk
title_sort andrographolide attenuates gut-brain-axis associated pathology in gulf war illness by modulating bacteriome-virome associated inflammation and microglia-neuron proinflammatory crosstalk
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8304847/
https://www.ncbi.nlm.nih.gov/pubmed/34356139
http://dx.doi.org/10.3390/brainsci11070905
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