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Podophyllotoxin and Rutin Modulate M1 (iNOS+) Macrophages and Mitigate Lethal Radiation (LR) Induced Inflammatory Responses in Mice

Accidental exposure to lethal doses of Gamma radiation leads to the systemic inflammatory syndrome which causes mortality. In view of this, management of hemopoietic syndrome by modulating pro-inflammatory response in clinically manageable time period seems to be the most appropriate strategy for en...

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Autores principales: Nadella, Vinod, Ranjan, Rajiv, Senthilkumaran, Balasubramanian, Qadri, S. S. Y. H., Pothani, Suresh, Singh, Ajay Kumar, Gupta, Manju L., Prakash, Hridayesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6379314/
https://www.ncbi.nlm.nih.gov/pubmed/30809222
http://dx.doi.org/10.3389/fimmu.2019.00106
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author Nadella, Vinod
Ranjan, Rajiv
Senthilkumaran, Balasubramanian
Qadri, S. S. Y. H.
Pothani, Suresh
Singh, Ajay Kumar
Gupta, Manju L.
Prakash, Hridayesh
author_facet Nadella, Vinod
Ranjan, Rajiv
Senthilkumaran, Balasubramanian
Qadri, S. S. Y. H.
Pothani, Suresh
Singh, Ajay Kumar
Gupta, Manju L.
Prakash, Hridayesh
author_sort Nadella, Vinod
collection PubMed
description Accidental exposure to lethal doses of Gamma radiation leads to the systemic inflammatory syndrome which causes mortality. In view of this, management of hemopoietic syndrome by modulating pro-inflammatory response in clinically manageable time period seems to be the most appropriate strategy for encountering radiation induced damage and recovery. As both tissue and peripheral macrophages are critical for the management of radiation induced injuries, we have unraveled the immunomodulatory potential of radioprotective formulation (G-003M) on peripheral macrophages populations in this study. G-003M inhibited lethal radiation induced NO and Th1 effector cytokines in the exposed macrophages indicating its M1 dim polarizing capacity. In similar lines, conditioning of mice with G-003M before lethal irradiation (LR) inhibited LR induced titre of Th1 effector cytokines in both serums as well as in lung, small intestine, and spleen tissue confirming its immunomodulatory potential. G-003M potentially down modulated inflammatory response in LPS induced inflammatory model and enhanced M2 polarization of iNOS+ M1 effector macrophages providing a molecular hint on G-003M mechanism of action on macrophages. These observations revealed that G-003M potentially modulate pro-inflammatory programming of macrophages and mitigate radiation-induced inflammatory stress which is believed to contribute significantly to radioprotective attribute of G-003M. In this study, we demonstrate that Rutin and Podophyllotoxin drive M1(dim)/M2 polarization of LR primed macrophages apart from protecting DNA from radiation. These drugs have the capacity to programme innate immune cells like macrophages which may be involved in homeostasis during recovery.
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spelling pubmed-63793142019-02-26 Podophyllotoxin and Rutin Modulate M1 (iNOS+) Macrophages and Mitigate Lethal Radiation (LR) Induced Inflammatory Responses in Mice Nadella, Vinod Ranjan, Rajiv Senthilkumaran, Balasubramanian Qadri, S. S. Y. H. Pothani, Suresh Singh, Ajay Kumar Gupta, Manju L. Prakash, Hridayesh Front Immunol Immunology Accidental exposure to lethal doses of Gamma radiation leads to the systemic inflammatory syndrome which causes mortality. In view of this, management of hemopoietic syndrome by modulating pro-inflammatory response in clinically manageable time period seems to be the most appropriate strategy for encountering radiation induced damage and recovery. As both tissue and peripheral macrophages are critical for the management of radiation induced injuries, we have unraveled the immunomodulatory potential of radioprotective formulation (G-003M) on peripheral macrophages populations in this study. G-003M inhibited lethal radiation induced NO and Th1 effector cytokines in the exposed macrophages indicating its M1 dim polarizing capacity. In similar lines, conditioning of mice with G-003M before lethal irradiation (LR) inhibited LR induced titre of Th1 effector cytokines in both serums as well as in lung, small intestine, and spleen tissue confirming its immunomodulatory potential. G-003M potentially down modulated inflammatory response in LPS induced inflammatory model and enhanced M2 polarization of iNOS+ M1 effector macrophages providing a molecular hint on G-003M mechanism of action on macrophages. These observations revealed that G-003M potentially modulate pro-inflammatory programming of macrophages and mitigate radiation-induced inflammatory stress which is believed to contribute significantly to radioprotective attribute of G-003M. In this study, we demonstrate that Rutin and Podophyllotoxin drive M1(dim)/M2 polarization of LR primed macrophages apart from protecting DNA from radiation. These drugs have the capacity to programme innate immune cells like macrophages which may be involved in homeostasis during recovery. Frontiers Media S.A. 2019-02-12 /pmc/articles/PMC6379314/ /pubmed/30809222 http://dx.doi.org/10.3389/fimmu.2019.00106 Text en Copyright © 2019 Nadella, Ranjan, Senthilkumaran, Qadri, Pothani, Singh, Gupta and Prakash. http://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 Immunology
Nadella, Vinod
Ranjan, Rajiv
Senthilkumaran, Balasubramanian
Qadri, S. S. Y. H.
Pothani, Suresh
Singh, Ajay Kumar
Gupta, Manju L.
Prakash, Hridayesh
Podophyllotoxin and Rutin Modulate M1 (iNOS+) Macrophages and Mitigate Lethal Radiation (LR) Induced Inflammatory Responses in Mice
title Podophyllotoxin and Rutin Modulate M1 (iNOS+) Macrophages and Mitigate Lethal Radiation (LR) Induced Inflammatory Responses in Mice
title_full Podophyllotoxin and Rutin Modulate M1 (iNOS+) Macrophages and Mitigate Lethal Radiation (LR) Induced Inflammatory Responses in Mice
title_fullStr Podophyllotoxin and Rutin Modulate M1 (iNOS+) Macrophages and Mitigate Lethal Radiation (LR) Induced Inflammatory Responses in Mice
title_full_unstemmed Podophyllotoxin and Rutin Modulate M1 (iNOS+) Macrophages and Mitigate Lethal Radiation (LR) Induced Inflammatory Responses in Mice
title_short Podophyllotoxin and Rutin Modulate M1 (iNOS+) Macrophages and Mitigate Lethal Radiation (LR) Induced Inflammatory Responses in Mice
title_sort podophyllotoxin and rutin modulate m1 (inos+) macrophages and mitigate lethal radiation (lr) induced inflammatory responses in mice
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6379314/
https://www.ncbi.nlm.nih.gov/pubmed/30809222
http://dx.doi.org/10.3389/fimmu.2019.00106
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