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Channeling macrophage polarization by rocaglates increases macrophage resistance to Mycobacterium tuberculosis

Macrophages contribute to host immunity and tissue homeostasis via alternative activation programs. M1-like macrophages control intracellular bacterial pathogens and tumor progression. In contrast, M2-like macrophages shape reparative microenvironments that can be conducive for pathogen survival or...

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Autores principales: Chatterjee, Sujoy, Yabaji, Shivraj M., Rukhlenko, Oleksii S., Bhattacharya, Bidisha, Waligurski, Emily, Vallavoju, Nandini, Ray, Somak, Kholodenko, Boris N., Brown, Lauren E., Beeler, Aaron B., Ivanov, Alexander R., Kobzik, Lester, Porco, John A., Kramnik, Igor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8333345/
https://www.ncbi.nlm.nih.gov/pubmed/34381970
http://dx.doi.org/10.1016/j.isci.2021.102845
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author Chatterjee, Sujoy
Yabaji, Shivraj M.
Rukhlenko, Oleksii S.
Bhattacharya, Bidisha
Waligurski, Emily
Vallavoju, Nandini
Ray, Somak
Kholodenko, Boris N.
Brown, Lauren E.
Beeler, Aaron B.
Ivanov, Alexander R.
Kobzik, Lester
Porco, John A.
Kramnik, Igor
author_facet Chatterjee, Sujoy
Yabaji, Shivraj M.
Rukhlenko, Oleksii S.
Bhattacharya, Bidisha
Waligurski, Emily
Vallavoju, Nandini
Ray, Somak
Kholodenko, Boris N.
Brown, Lauren E.
Beeler, Aaron B.
Ivanov, Alexander R.
Kobzik, Lester
Porco, John A.
Kramnik, Igor
author_sort Chatterjee, Sujoy
collection PubMed
description Macrophages contribute to host immunity and tissue homeostasis via alternative activation programs. M1-like macrophages control intracellular bacterial pathogens and tumor progression. In contrast, M2-like macrophages shape reparative microenvironments that can be conducive for pathogen survival or tumor growth. An imbalance of these macrophages phenotypes may perpetuate sites of chronic unresolved inflammation, such as infectious granulomas and solid tumors. We have found that plant-derived and synthetic rocaglates sensitize macrophages to low concentrations of the M1-inducing cytokine IFN-gamma and inhibit their responsiveness to IL-4, a prototypical activator of the M2-like phenotype. Treatment of primary macrophages with rocaglates enhanced phagosome-lysosome fusion and control of intracellular mycobacteria. Thus, rocaglates represent a novel class of immunomodulators that can direct macrophage polarization toward the M1-like phenotype in complex microenvironments associated with hypofunction of type 1 and/or hyperactivation of type 2 immunity, e.g., chronic bacterial infections, allergies, and, possibly, certain tumors.
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spelling pubmed-83333452021-08-10 Channeling macrophage polarization by rocaglates increases macrophage resistance to Mycobacterium tuberculosis Chatterjee, Sujoy Yabaji, Shivraj M. Rukhlenko, Oleksii S. Bhattacharya, Bidisha Waligurski, Emily Vallavoju, Nandini Ray, Somak Kholodenko, Boris N. Brown, Lauren E. Beeler, Aaron B. Ivanov, Alexander R. Kobzik, Lester Porco, John A. Kramnik, Igor iScience Article Macrophages contribute to host immunity and tissue homeostasis via alternative activation programs. M1-like macrophages control intracellular bacterial pathogens and tumor progression. In contrast, M2-like macrophages shape reparative microenvironments that can be conducive for pathogen survival or tumor growth. An imbalance of these macrophages phenotypes may perpetuate sites of chronic unresolved inflammation, such as infectious granulomas and solid tumors. We have found that plant-derived and synthetic rocaglates sensitize macrophages to low concentrations of the M1-inducing cytokine IFN-gamma and inhibit their responsiveness to IL-4, a prototypical activator of the M2-like phenotype. Treatment of primary macrophages with rocaglates enhanced phagosome-lysosome fusion and control of intracellular mycobacteria. Thus, rocaglates represent a novel class of immunomodulators that can direct macrophage polarization toward the M1-like phenotype in complex microenvironments associated with hypofunction of type 1 and/or hyperactivation of type 2 immunity, e.g., chronic bacterial infections, allergies, and, possibly, certain tumors. Elsevier 2021-07-10 /pmc/articles/PMC8333345/ /pubmed/34381970 http://dx.doi.org/10.1016/j.isci.2021.102845 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Chatterjee, Sujoy
Yabaji, Shivraj M.
Rukhlenko, Oleksii S.
Bhattacharya, Bidisha
Waligurski, Emily
Vallavoju, Nandini
Ray, Somak
Kholodenko, Boris N.
Brown, Lauren E.
Beeler, Aaron B.
Ivanov, Alexander R.
Kobzik, Lester
Porco, John A.
Kramnik, Igor
Channeling macrophage polarization by rocaglates increases macrophage resistance to Mycobacterium tuberculosis
title Channeling macrophage polarization by rocaglates increases macrophage resistance to Mycobacterium tuberculosis
title_full Channeling macrophage polarization by rocaglates increases macrophage resistance to Mycobacterium tuberculosis
title_fullStr Channeling macrophage polarization by rocaglates increases macrophage resistance to Mycobacterium tuberculosis
title_full_unstemmed Channeling macrophage polarization by rocaglates increases macrophage resistance to Mycobacterium tuberculosis
title_short Channeling macrophage polarization by rocaglates increases macrophage resistance to Mycobacterium tuberculosis
title_sort channeling macrophage polarization by rocaglates increases macrophage resistance to mycobacterium tuberculosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8333345/
https://www.ncbi.nlm.nih.gov/pubmed/34381970
http://dx.doi.org/10.1016/j.isci.2021.102845
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