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Myeloperoxidase exerts anti-tumor activity in glioma after radiotherapy

BACKGROUND: Host immune response is a critical component in tumorigenesis and immune escape. Radiation is widely used for glioblastoma (GBM) and can induce marked tissue inflammation and substantially alter host immune response. However, the role of myeloperoxidase (MPO), a key enzyme in inflammatio...

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Autores principales: Ali, Muhammad, Fulci, Giulia, Grigalavicius, Mantas, Pulli, Benjamin, Li, Anning, Wojtkiewicz, Gregory R., Wang, Cuihua, Hsieh, Kevin Li-Chun, Linnoila, Jenny J., Theodossiou, Theodossis A., Chen, John W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Neoplasia Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8894277/
https://www.ncbi.nlm.nih.gov/pubmed/35247801
http://dx.doi.org/10.1016/j.neo.2022.100779
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author Ali, Muhammad
Fulci, Giulia
Grigalavicius, Mantas
Pulli, Benjamin
Li, Anning
Wojtkiewicz, Gregory R.
Wang, Cuihua
Hsieh, Kevin Li-Chun
Linnoila, Jenny J.
Theodossiou, Theodossis A.
Chen, John W.
author_facet Ali, Muhammad
Fulci, Giulia
Grigalavicius, Mantas
Pulli, Benjamin
Li, Anning
Wojtkiewicz, Gregory R.
Wang, Cuihua
Hsieh, Kevin Li-Chun
Linnoila, Jenny J.
Theodossiou, Theodossis A.
Chen, John W.
author_sort Ali, Muhammad
collection PubMed
description BACKGROUND: Host immune response is a critical component in tumorigenesis and immune escape. Radiation is widely used for glioblastoma (GBM) and can induce marked tissue inflammation and substantially alter host immune response. However, the role of myeloperoxidase (MPO), a key enzyme in inflammation and host immune response, in tumorigenesis after radiotherapy is unclear. In this study, we aimed to determine how post-radiation MPO activity influences GBM and outcome. METHODS: We injected C57BL/6J or MPO-knockout mice with 005 mouse GBM stem cells intracranially. To observe MPO's effects on post-radiation tumor progression, we then irradiated the head with 10 Gy unfractionated and treated the mice with a specific MPO inhibitor, 4-aminobenzoic acid hydrazide (ABAH), or vehicle as control. We performed semi-quantitative longitudinal molecular MRI, enzymatic assays and flow cytometry to assess changes in inflammatory response and tumor size, and tracked survival. We also performed cell culture experiments in murine and human GBM cells to determine the effect of MPO on these cells. RESULTS: Brain irradiation increased the number of monocytes/macrophages and neutrophils, and boosted MPO activity by ten-fold in the glioma microenvironment. However, MPO inhibition dampened radiation-induced inflammation, demonstrating decreased MPO-specific signal on molecular MRI and attenuated neutrophil and inflammatory monocyte/macrophage recruitment to the glioma. Compared to saline-treated mice, both ABAH-treated and MPO-knockout mice had accelerated tumor growth and reduced survival. We further confirmed that MPO decreased tumor cell viability and proliferation in cell cultures. CONCLUSION: Local radiation to the brain initiated an acute systemic inflammatory response with increased MPO-carrying cells both in the periphery and the GBM, resulting in increased MPO activity in the tumor microenvironment. Inhibition or absence of MPO activity increased tumor growth and decreased host survival, revealing that elevated MPO activity after radiation has an anti-tumor role.
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spelling pubmed-88942772022-03-11 Myeloperoxidase exerts anti-tumor activity in glioma after radiotherapy Ali, Muhammad Fulci, Giulia Grigalavicius, Mantas Pulli, Benjamin Li, Anning Wojtkiewicz, Gregory R. Wang, Cuihua Hsieh, Kevin Li-Chun Linnoila, Jenny J. Theodossiou, Theodossis A. Chen, John W. Neoplasia Original Research BACKGROUND: Host immune response is a critical component in tumorigenesis and immune escape. Radiation is widely used for glioblastoma (GBM) and can induce marked tissue inflammation and substantially alter host immune response. However, the role of myeloperoxidase (MPO), a key enzyme in inflammation and host immune response, in tumorigenesis after radiotherapy is unclear. In this study, we aimed to determine how post-radiation MPO activity influences GBM and outcome. METHODS: We injected C57BL/6J or MPO-knockout mice with 005 mouse GBM stem cells intracranially. To observe MPO's effects on post-radiation tumor progression, we then irradiated the head with 10 Gy unfractionated and treated the mice with a specific MPO inhibitor, 4-aminobenzoic acid hydrazide (ABAH), or vehicle as control. We performed semi-quantitative longitudinal molecular MRI, enzymatic assays and flow cytometry to assess changes in inflammatory response and tumor size, and tracked survival. We also performed cell culture experiments in murine and human GBM cells to determine the effect of MPO on these cells. RESULTS: Brain irradiation increased the number of monocytes/macrophages and neutrophils, and boosted MPO activity by ten-fold in the glioma microenvironment. However, MPO inhibition dampened radiation-induced inflammation, demonstrating decreased MPO-specific signal on molecular MRI and attenuated neutrophil and inflammatory monocyte/macrophage recruitment to the glioma. Compared to saline-treated mice, both ABAH-treated and MPO-knockout mice had accelerated tumor growth and reduced survival. We further confirmed that MPO decreased tumor cell viability and proliferation in cell cultures. CONCLUSION: Local radiation to the brain initiated an acute systemic inflammatory response with increased MPO-carrying cells both in the periphery and the GBM, resulting in increased MPO activity in the tumor microenvironment. Inhibition or absence of MPO activity increased tumor growth and decreased host survival, revealing that elevated MPO activity after radiation has an anti-tumor role. Neoplasia Press 2022-03-02 /pmc/articles/PMC8894277/ /pubmed/35247801 http://dx.doi.org/10.1016/j.neo.2022.100779 Text en © 2022 The Authors. Published by Elsevier Inc. 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 Original Research
Ali, Muhammad
Fulci, Giulia
Grigalavicius, Mantas
Pulli, Benjamin
Li, Anning
Wojtkiewicz, Gregory R.
Wang, Cuihua
Hsieh, Kevin Li-Chun
Linnoila, Jenny J.
Theodossiou, Theodossis A.
Chen, John W.
Myeloperoxidase exerts anti-tumor activity in glioma after radiotherapy
title Myeloperoxidase exerts anti-tumor activity in glioma after radiotherapy
title_full Myeloperoxidase exerts anti-tumor activity in glioma after radiotherapy
title_fullStr Myeloperoxidase exerts anti-tumor activity in glioma after radiotherapy
title_full_unstemmed Myeloperoxidase exerts anti-tumor activity in glioma after radiotherapy
title_short Myeloperoxidase exerts anti-tumor activity in glioma after radiotherapy
title_sort myeloperoxidase exerts anti-tumor activity in glioma after radiotherapy
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8894277/
https://www.ncbi.nlm.nih.gov/pubmed/35247801
http://dx.doi.org/10.1016/j.neo.2022.100779
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