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Macrophages are recruited to hypoxic tumor areas and acquire a Pro-Angiogenic M2-Polarized phenotype via hypoxic cancer cell derived cytokines Oncostatin M and Eotaxin

TAMs, a unique and distinct M2-skewed myeloid population of tumor stroma, exhibiting pro-tumor functions is fast emerging as a potential target for anti-cancer immunotherapy. Macrophage-recruitment and M2-polarization represent key TAMs-related phenomenon that are amenable to therapeutic interventio...

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Autores principales: Tripathi, Chakrapani, Tewari, Brij Nath, Kanchan, Ranjana Kumari, Baghel, Khemraj Singh, Nautiyal, Naveen, Shrivastava, Richa, Kaur, Harbeer, Bhatt, Madan Lal Bramha, Bhadauria, Smrati
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4170629/
https://www.ncbi.nlm.nih.gov/pubmed/25051364
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author Tripathi, Chakrapani
Tewari, Brij Nath
Kanchan, Ranjana Kumari
Baghel, Khemraj Singh
Nautiyal, Naveen
Shrivastava, Richa
Kaur, Harbeer
Bhatt, Madan Lal Bramha
Bhadauria, Smrati
author_facet Tripathi, Chakrapani
Tewari, Brij Nath
Kanchan, Ranjana Kumari
Baghel, Khemraj Singh
Nautiyal, Naveen
Shrivastava, Richa
Kaur, Harbeer
Bhatt, Madan Lal Bramha
Bhadauria, Smrati
author_sort Tripathi, Chakrapani
collection PubMed
description TAMs, a unique and distinct M2-skewed myeloid population of tumor stroma, exhibiting pro-tumor functions is fast emerging as a potential target for anti-cancer immunotherapy. Macrophage-recruitment and M2-polarization represent key TAMs-related phenomenon that are amenable to therapeutic intervention. However successful translation of these approaches into effective therapeutic regimen requires better characterization of tumor-microenvironment derived signals that regulate macrophage recruitment and their polarization. Owing to hypoxic milieu being a persistent feature of tumor-microenvironment and a major contributor to malignancy and treatment resistance, the current study was planned with an aim to decipher tumor cell responses to hypoxia vis-a-vis macrophage homing and phenotype switching. Here, we show that hypoxia-primed cancer cells chemoattract and polarize macrophages to pro-angiogenic M2-polarized subtype via Eotaxin and Oncostatin M. Concordantly, hypoxic regions of human breast-cancer specimen exhibited elevated Eotaxin and Oncostatin M levels with concurrently elevated M2-macrophage content. Blockade of Eotaxin/Oncostatin M not only prevented hypoxic breast-cancer cells from recruiting and polarizing macrophages towards an M2-polarized phenotype and retarded tumor progression in 4T1/BALB/c-syngenic-mice-model of breast-cancer but also enhanced the efficacy of anti-angiogenic Bevacizumab. The findings established these two cytokines as novel targets for devising effective anticancer therapy particularly for tumors that are refractory or develop resistance to anti-angiogenic therapeutics.
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spelling pubmed-41706292014-09-22 Macrophages are recruited to hypoxic tumor areas and acquire a Pro-Angiogenic M2-Polarized phenotype via hypoxic cancer cell derived cytokines Oncostatin M and Eotaxin Tripathi, Chakrapani Tewari, Brij Nath Kanchan, Ranjana Kumari Baghel, Khemraj Singh Nautiyal, Naveen Shrivastava, Richa Kaur, Harbeer Bhatt, Madan Lal Bramha Bhadauria, Smrati Oncotarget Research Paper TAMs, a unique and distinct M2-skewed myeloid population of tumor stroma, exhibiting pro-tumor functions is fast emerging as a potential target for anti-cancer immunotherapy. Macrophage-recruitment and M2-polarization represent key TAMs-related phenomenon that are amenable to therapeutic intervention. However successful translation of these approaches into effective therapeutic regimen requires better characterization of tumor-microenvironment derived signals that regulate macrophage recruitment and their polarization. Owing to hypoxic milieu being a persistent feature of tumor-microenvironment and a major contributor to malignancy and treatment resistance, the current study was planned with an aim to decipher tumor cell responses to hypoxia vis-a-vis macrophage homing and phenotype switching. Here, we show that hypoxia-primed cancer cells chemoattract and polarize macrophages to pro-angiogenic M2-polarized subtype via Eotaxin and Oncostatin M. Concordantly, hypoxic regions of human breast-cancer specimen exhibited elevated Eotaxin and Oncostatin M levels with concurrently elevated M2-macrophage content. Blockade of Eotaxin/Oncostatin M not only prevented hypoxic breast-cancer cells from recruiting and polarizing macrophages towards an M2-polarized phenotype and retarded tumor progression in 4T1/BALB/c-syngenic-mice-model of breast-cancer but also enhanced the efficacy of anti-angiogenic Bevacizumab. The findings established these two cytokines as novel targets for devising effective anticancer therapy particularly for tumors that are refractory or develop resistance to anti-angiogenic therapeutics. Impact Journals LLC 2014-06-17 /pmc/articles/PMC4170629/ /pubmed/25051364 Text en Copyright: © 2014 Tripathi et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Tripathi, Chakrapani
Tewari, Brij Nath
Kanchan, Ranjana Kumari
Baghel, Khemraj Singh
Nautiyal, Naveen
Shrivastava, Richa
Kaur, Harbeer
Bhatt, Madan Lal Bramha
Bhadauria, Smrati
Macrophages are recruited to hypoxic tumor areas and acquire a Pro-Angiogenic M2-Polarized phenotype via hypoxic cancer cell derived cytokines Oncostatin M and Eotaxin
title Macrophages are recruited to hypoxic tumor areas and acquire a Pro-Angiogenic M2-Polarized phenotype via hypoxic cancer cell derived cytokines Oncostatin M and Eotaxin
title_full Macrophages are recruited to hypoxic tumor areas and acquire a Pro-Angiogenic M2-Polarized phenotype via hypoxic cancer cell derived cytokines Oncostatin M and Eotaxin
title_fullStr Macrophages are recruited to hypoxic tumor areas and acquire a Pro-Angiogenic M2-Polarized phenotype via hypoxic cancer cell derived cytokines Oncostatin M and Eotaxin
title_full_unstemmed Macrophages are recruited to hypoxic tumor areas and acquire a Pro-Angiogenic M2-Polarized phenotype via hypoxic cancer cell derived cytokines Oncostatin M and Eotaxin
title_short Macrophages are recruited to hypoxic tumor areas and acquire a Pro-Angiogenic M2-Polarized phenotype via hypoxic cancer cell derived cytokines Oncostatin M and Eotaxin
title_sort macrophages are recruited to hypoxic tumor areas and acquire a pro-angiogenic m2-polarized phenotype via hypoxic cancer cell derived cytokines oncostatin m and eotaxin
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4170629/
https://www.ncbi.nlm.nih.gov/pubmed/25051364
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