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Restoring Oat Nanoparticles Mediated Brain Memory Function of Mice Fed Alcohol by Sorting Inflammatory Dectin-1 Complex Into Microglial Exosomes

Microglia modulate pro-inflammatory and neurotoxic activities. Edible plant-derived factors improve brain function. Current knowledge of the molecular interactions between edible plant-derived factors and the microglial cell is limited. Here an alcohol-induced chronic brain inflammation model is use...

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Autores principales: Xu, Fangyi, Mu, Jingyao, Teng, Yun, Zhang, Xiangcheng, Sundaram, Kumaran, Sriwastva, Mukesh K., Kumar, Anil, Lei, Chao, Zhang, Lifeng, Liu, Qiaohong M., Yan, Jun, McClain, Craig J., Merchant, Michael L., Zhang, Huang-Ge
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8858573/
https://www.ncbi.nlm.nih.gov/pubmed/34897972
http://dx.doi.org/10.1002/smll.202105385
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author Xu, Fangyi
Mu, Jingyao
Teng, Yun
Zhang, Xiangcheng
Sundaram, Kumaran
Sriwastva, Mukesh K.
Kumar, Anil
Lei, Chao
Zhang, Lifeng
Liu, Qiaohong M.
Yan, Jun
McClain, Craig J.
Merchant, Michael L.
Zhang, Huang-Ge
author_facet Xu, Fangyi
Mu, Jingyao
Teng, Yun
Zhang, Xiangcheng
Sundaram, Kumaran
Sriwastva, Mukesh K.
Kumar, Anil
Lei, Chao
Zhang, Lifeng
Liu, Qiaohong M.
Yan, Jun
McClain, Craig J.
Merchant, Michael L.
Zhang, Huang-Ge
author_sort Xu, Fangyi
collection PubMed
description Microglia modulate pro-inflammatory and neurotoxic activities. Edible plant-derived factors improve brain function. Current knowledge of the molecular interactions between edible plant-derived factors and the microglial cell is limited. Here an alcohol-induced chronic brain inflammation model is used to identify that the microglial cell is the novel target of oat nanoparticles (oatN). Oral administration of oatN inhibits brain inflammation and improves brain memory function of mice that are fed alcohol. Mechanistically, ethanol activates dectin-1 mediated inflammatory pathway. OatN is taken up by microglial cells via β-glucan mediated binding to microglial hippocalcin (HPCA) whereas oatN digalactosyldiacylglycerol (DGDG) prevents assess of oatN β-glucan to dectin-1. Subsequently endocytosed β-glucan/HPCA is recruited in an endosomal recycling compartment (ERC) via interaction with Rab11a. This complex then sequesters the dectin-1 in the ERC in an oatN β-glucan dependent manner and alters the location of dectin-1 from Golgi to early endosomes and lysosomes and increases exportation of dectin-1 into exosomes in an Rab11a dependent manner. Collectively, these cascading actions lead to preventing the activation of the alcoholic induced brain inflammation signing pathway(s). This coordinated assembling of the HPCA/Rab11a/dectin-1 complex by oral administration of oatN may contribute to the prevention of brain inflammation.
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spelling pubmed-88585732023-02-01 Restoring Oat Nanoparticles Mediated Brain Memory Function of Mice Fed Alcohol by Sorting Inflammatory Dectin-1 Complex Into Microglial Exosomes Xu, Fangyi Mu, Jingyao Teng, Yun Zhang, Xiangcheng Sundaram, Kumaran Sriwastva, Mukesh K. Kumar, Anil Lei, Chao Zhang, Lifeng Liu, Qiaohong M. Yan, Jun McClain, Craig J. Merchant, Michael L. Zhang, Huang-Ge Small Article Microglia modulate pro-inflammatory and neurotoxic activities. Edible plant-derived factors improve brain function. Current knowledge of the molecular interactions between edible plant-derived factors and the microglial cell is limited. Here an alcohol-induced chronic brain inflammation model is used to identify that the microglial cell is the novel target of oat nanoparticles (oatN). Oral administration of oatN inhibits brain inflammation and improves brain memory function of mice that are fed alcohol. Mechanistically, ethanol activates dectin-1 mediated inflammatory pathway. OatN is taken up by microglial cells via β-glucan mediated binding to microglial hippocalcin (HPCA) whereas oatN digalactosyldiacylglycerol (DGDG) prevents assess of oatN β-glucan to dectin-1. Subsequently endocytosed β-glucan/HPCA is recruited in an endosomal recycling compartment (ERC) via interaction with Rab11a. This complex then sequesters the dectin-1 in the ERC in an oatN β-glucan dependent manner and alters the location of dectin-1 from Golgi to early endosomes and lysosomes and increases exportation of dectin-1 into exosomes in an Rab11a dependent manner. Collectively, these cascading actions lead to preventing the activation of the alcoholic induced brain inflammation signing pathway(s). This coordinated assembling of the HPCA/Rab11a/dectin-1 complex by oral administration of oatN may contribute to the prevention of brain inflammation. 2022-02 2021-12-13 /pmc/articles/PMC8858573/ /pubmed/34897972 http://dx.doi.org/10.1002/smll.202105385 Text en https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Xu, Fangyi
Mu, Jingyao
Teng, Yun
Zhang, Xiangcheng
Sundaram, Kumaran
Sriwastva, Mukesh K.
Kumar, Anil
Lei, Chao
Zhang, Lifeng
Liu, Qiaohong M.
Yan, Jun
McClain, Craig J.
Merchant, Michael L.
Zhang, Huang-Ge
Restoring Oat Nanoparticles Mediated Brain Memory Function of Mice Fed Alcohol by Sorting Inflammatory Dectin-1 Complex Into Microglial Exosomes
title Restoring Oat Nanoparticles Mediated Brain Memory Function of Mice Fed Alcohol by Sorting Inflammatory Dectin-1 Complex Into Microglial Exosomes
title_full Restoring Oat Nanoparticles Mediated Brain Memory Function of Mice Fed Alcohol by Sorting Inflammatory Dectin-1 Complex Into Microglial Exosomes
title_fullStr Restoring Oat Nanoparticles Mediated Brain Memory Function of Mice Fed Alcohol by Sorting Inflammatory Dectin-1 Complex Into Microglial Exosomes
title_full_unstemmed Restoring Oat Nanoparticles Mediated Brain Memory Function of Mice Fed Alcohol by Sorting Inflammatory Dectin-1 Complex Into Microglial Exosomes
title_short Restoring Oat Nanoparticles Mediated Brain Memory Function of Mice Fed Alcohol by Sorting Inflammatory Dectin-1 Complex Into Microglial Exosomes
title_sort restoring oat nanoparticles mediated brain memory function of mice fed alcohol by sorting inflammatory dectin-1 complex into microglial exosomes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8858573/
https://www.ncbi.nlm.nih.gov/pubmed/34897972
http://dx.doi.org/10.1002/smll.202105385
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