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Asbestos conceives Fe(II)-dependent mutagenic stromal milieu through ceaseless macrophage ferroptosis and β-catenin induction in mesothelium

Asbestos is still a social burden worldwide as a carcinogen causing malignant mesothelioma. Whereas recent studies suggest that local iron reduction is a preventive strategy against carcinogenesis, little is known regarding the cellular and molecular mechanisms surrounding excess iron. Here by diffe...

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Autores principales: Ito, Fumiya, Yanatori, Izumi, Maeda, Yuki, Nimura, Kenta, Ito, Satoki, Hirayama, Tasuku, Nagasawa, Hideko, Kohyama, Norihiko, Okazaki, Yasumasa, Akatsuka, Shinya, Toyokuni, Shinya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7330611/
https://www.ncbi.nlm.nih.gov/pubmed/32863225
http://dx.doi.org/10.1016/j.redox.2020.101616
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author Ito, Fumiya
Yanatori, Izumi
Maeda, Yuki
Nimura, Kenta
Ito, Satoki
Hirayama, Tasuku
Nagasawa, Hideko
Kohyama, Norihiko
Okazaki, Yasumasa
Akatsuka, Shinya
Toyokuni, Shinya
author_facet Ito, Fumiya
Yanatori, Izumi
Maeda, Yuki
Nimura, Kenta
Ito, Satoki
Hirayama, Tasuku
Nagasawa, Hideko
Kohyama, Norihiko
Okazaki, Yasumasa
Akatsuka, Shinya
Toyokuni, Shinya
author_sort Ito, Fumiya
collection PubMed
description Asbestos is still a social burden worldwide as a carcinogen causing malignant mesothelioma. Whereas recent studies suggest that local iron reduction is a preventive strategy against carcinogenesis, little is known regarding the cellular and molecular mechanisms surrounding excess iron. Here by differentially using high-risk and low-risk asbestos fibers (crocidolite and anthophyllite, respectively), we identified asbestos-induced mutagenic milieu for mesothelial cells. Rat and cell experiments revealed that phagocytosis of asbestos by macrophages results in their distinctive necrotic death; initially lysosome-depenent cell death and later ferroptosis, which increase intra- and extra-cellular catalytic Fe(II). DNA damage in mesothelial cells, as assessed by 8-hydroxy-2′-deoxyguanosine and γ-H2AX, increased after crocidolite exposure during regeneration accompanied by β-catenin activation. Conversely, β-catenin overexpression in mesothelial cells induced higher intracellular catalytic Fe(II) with increased G2/M cell-cycle fraction, when p16(INK4A) genomic loci localized more peripherally in the nucleus. Mesothelial cells after challenge of H(2)O(2) under β-catenin overexpression presented low p16(INK4A) expression with a high incidence of deletion in p16(INK4A) locus. Thus, crocidolite generated catalytic Fe(II)-rich mutagenic environment for mesothelial cells by necrotizing macrophages with lysosomal cell death and ferroptosis. These results suggest novel molecular strategies to prevent mesothelial carcinogenesis after asbestos exposure.
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spelling pubmed-73306112020-07-06 Asbestos conceives Fe(II)-dependent mutagenic stromal milieu through ceaseless macrophage ferroptosis and β-catenin induction in mesothelium Ito, Fumiya Yanatori, Izumi Maeda, Yuki Nimura, Kenta Ito, Satoki Hirayama, Tasuku Nagasawa, Hideko Kohyama, Norihiko Okazaki, Yasumasa Akatsuka, Shinya Toyokuni, Shinya Redox Biol Research Paper Asbestos is still a social burden worldwide as a carcinogen causing malignant mesothelioma. Whereas recent studies suggest that local iron reduction is a preventive strategy against carcinogenesis, little is known regarding the cellular and molecular mechanisms surrounding excess iron. Here by differentially using high-risk and low-risk asbestos fibers (crocidolite and anthophyllite, respectively), we identified asbestos-induced mutagenic milieu for mesothelial cells. Rat and cell experiments revealed that phagocytosis of asbestos by macrophages results in their distinctive necrotic death; initially lysosome-depenent cell death and later ferroptosis, which increase intra- and extra-cellular catalytic Fe(II). DNA damage in mesothelial cells, as assessed by 8-hydroxy-2′-deoxyguanosine and γ-H2AX, increased after crocidolite exposure during regeneration accompanied by β-catenin activation. Conversely, β-catenin overexpression in mesothelial cells induced higher intracellular catalytic Fe(II) with increased G2/M cell-cycle fraction, when p16(INK4A) genomic loci localized more peripherally in the nucleus. Mesothelial cells after challenge of H(2)O(2) under β-catenin overexpression presented low p16(INK4A) expression with a high incidence of deletion in p16(INK4A) locus. Thus, crocidolite generated catalytic Fe(II)-rich mutagenic environment for mesothelial cells by necrotizing macrophages with lysosomal cell death and ferroptosis. These results suggest novel molecular strategies to prevent mesothelial carcinogenesis after asbestos exposure. Elsevier 2020-06-24 /pmc/articles/PMC7330611/ /pubmed/32863225 http://dx.doi.org/10.1016/j.redox.2020.101616 Text en © 2020 Published by Elsevier B.V. http://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 Research Paper
Ito, Fumiya
Yanatori, Izumi
Maeda, Yuki
Nimura, Kenta
Ito, Satoki
Hirayama, Tasuku
Nagasawa, Hideko
Kohyama, Norihiko
Okazaki, Yasumasa
Akatsuka, Shinya
Toyokuni, Shinya
Asbestos conceives Fe(II)-dependent mutagenic stromal milieu through ceaseless macrophage ferroptosis and β-catenin induction in mesothelium
title Asbestos conceives Fe(II)-dependent mutagenic stromal milieu through ceaseless macrophage ferroptosis and β-catenin induction in mesothelium
title_full Asbestos conceives Fe(II)-dependent mutagenic stromal milieu through ceaseless macrophage ferroptosis and β-catenin induction in mesothelium
title_fullStr Asbestos conceives Fe(II)-dependent mutagenic stromal milieu through ceaseless macrophage ferroptosis and β-catenin induction in mesothelium
title_full_unstemmed Asbestos conceives Fe(II)-dependent mutagenic stromal milieu through ceaseless macrophage ferroptosis and β-catenin induction in mesothelium
title_short Asbestos conceives Fe(II)-dependent mutagenic stromal milieu through ceaseless macrophage ferroptosis and β-catenin induction in mesothelium
title_sort asbestos conceives fe(ii)-dependent mutagenic stromal milieu through ceaseless macrophage ferroptosis and β-catenin induction in mesothelium
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7330611/
https://www.ncbi.nlm.nih.gov/pubmed/32863225
http://dx.doi.org/10.1016/j.redox.2020.101616
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