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Irradiation Accelerates Plaque Formation and Cellular Senescence in Flow‐Altered Carotid Arteries of Apolipoprotein E Knock‐Out Mice

BACKGROUND: Chronic inflammation through cellular senescence, known as the senescence‐associated secretory phenotype, is a mechanism of various organ diseases, including atherosclerosis. Particularly, ionizing radiation (IR) contributes to cellular senescence by causing DNA damage. Although previous...

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Autores principales: Yamamoto, Yu, Minami, Manabu, Yoshida, Kazumichi, Nagata, Manabu, Miyata, Takeshi, Yang, Tao, Takayama, Naoki, Suzuki, Keita, Okawa, Masakazu, Yamada, Kiyofumi, Miyamoto, Susumu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8483483/
https://www.ncbi.nlm.nih.gov/pubmed/34227406
http://dx.doi.org/10.1161/JAHA.120.020712
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author Yamamoto, Yu
Minami, Manabu
Yoshida, Kazumichi
Nagata, Manabu
Miyata, Takeshi
Yang, Tao
Takayama, Naoki
Suzuki, Keita
Okawa, Masakazu
Yamada, Kiyofumi
Miyamoto, Susumu
author_facet Yamamoto, Yu
Minami, Manabu
Yoshida, Kazumichi
Nagata, Manabu
Miyata, Takeshi
Yang, Tao
Takayama, Naoki
Suzuki, Keita
Okawa, Masakazu
Yamada, Kiyofumi
Miyamoto, Susumu
author_sort Yamamoto, Yu
collection PubMed
description BACKGROUND: Chronic inflammation through cellular senescence, known as the senescence‐associated secretory phenotype, is a mechanism of various organ diseases, including atherosclerosis. Particularly, ionizing radiation (IR) contributes to cellular senescence by causing DNA damage. Although previous clinical studies have demonstrated that radiotherapy causes atherosclerosis as a long‐term side effect, the detailed mechanism is unclear. This study was conducted to investigate the relationship between radiation‐induced atherosclerosis and senescence‐associated secretory phenotype in murine carotid arteries. METHODS AND RESULTS: Partial ligation of the left carotid artery branches in 9‐week‐old male apolipoprotein E‐deficient mice was performed to induce atherosclerosis. The mice received total body irradiation at a dose of 6 Gy using gamma rays at 2 weeks post operation. We compared the samples collected 4 weeks after IR with unirradiated control samples. The IR and control groups presented pathologically progressive lesions in 90.9% and 72.3% of mice, respectively. Plaque volume, macrophage accumulation, and phenotype switching of vascular smooth muscle cells were advanced in the IR group. Irradiated samples showed increased persistent DNA damage response (53BP1 [p53 binding protein 1]), upregulated cyclin‐dependent kinase inhibitors (p16INK4a and p21), and elevated inflammatory chemokines expression (monocyte chemotactic protein‐1, keratinocyte‐derived chemokine, and macrophage inflammatory protein 2). CONCLUSIONS: IR promoted plaque growth in murine carotid arteries. Our findings support the possibility that senescence‐associated secretory phenotype aggravates atherogenesis in irradiated artery. This mice model might contribute to mechanism elucidation of radiation‐induced atherosclerosis.
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spelling pubmed-84834832021-10-06 Irradiation Accelerates Plaque Formation and Cellular Senescence in Flow‐Altered Carotid Arteries of Apolipoprotein E Knock‐Out Mice Yamamoto, Yu Minami, Manabu Yoshida, Kazumichi Nagata, Manabu Miyata, Takeshi Yang, Tao Takayama, Naoki Suzuki, Keita Okawa, Masakazu Yamada, Kiyofumi Miyamoto, Susumu J Am Heart Assoc Original Research BACKGROUND: Chronic inflammation through cellular senescence, known as the senescence‐associated secretory phenotype, is a mechanism of various organ diseases, including atherosclerosis. Particularly, ionizing radiation (IR) contributes to cellular senescence by causing DNA damage. Although previous clinical studies have demonstrated that radiotherapy causes atherosclerosis as a long‐term side effect, the detailed mechanism is unclear. This study was conducted to investigate the relationship between radiation‐induced atherosclerosis and senescence‐associated secretory phenotype in murine carotid arteries. METHODS AND RESULTS: Partial ligation of the left carotid artery branches in 9‐week‐old male apolipoprotein E‐deficient mice was performed to induce atherosclerosis. The mice received total body irradiation at a dose of 6 Gy using gamma rays at 2 weeks post operation. We compared the samples collected 4 weeks after IR with unirradiated control samples. The IR and control groups presented pathologically progressive lesions in 90.9% and 72.3% of mice, respectively. Plaque volume, macrophage accumulation, and phenotype switching of vascular smooth muscle cells were advanced in the IR group. Irradiated samples showed increased persistent DNA damage response (53BP1 [p53 binding protein 1]), upregulated cyclin‐dependent kinase inhibitors (p16INK4a and p21), and elevated inflammatory chemokines expression (monocyte chemotactic protein‐1, keratinocyte‐derived chemokine, and macrophage inflammatory protein 2). CONCLUSIONS: IR promoted plaque growth in murine carotid arteries. Our findings support the possibility that senescence‐associated secretory phenotype aggravates atherogenesis in irradiated artery. This mice model might contribute to mechanism elucidation of radiation‐induced atherosclerosis. John Wiley and Sons Inc. 2021-07-06 /pmc/articles/PMC8483483/ /pubmed/34227406 http://dx.doi.org/10.1161/JAHA.120.020712 Text en © 2021 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Research
Yamamoto, Yu
Minami, Manabu
Yoshida, Kazumichi
Nagata, Manabu
Miyata, Takeshi
Yang, Tao
Takayama, Naoki
Suzuki, Keita
Okawa, Masakazu
Yamada, Kiyofumi
Miyamoto, Susumu
Irradiation Accelerates Plaque Formation and Cellular Senescence in Flow‐Altered Carotid Arteries of Apolipoprotein E Knock‐Out Mice
title Irradiation Accelerates Plaque Formation and Cellular Senescence in Flow‐Altered Carotid Arteries of Apolipoprotein E Knock‐Out Mice
title_full Irradiation Accelerates Plaque Formation and Cellular Senescence in Flow‐Altered Carotid Arteries of Apolipoprotein E Knock‐Out Mice
title_fullStr Irradiation Accelerates Plaque Formation and Cellular Senescence in Flow‐Altered Carotid Arteries of Apolipoprotein E Knock‐Out Mice
title_full_unstemmed Irradiation Accelerates Plaque Formation and Cellular Senescence in Flow‐Altered Carotid Arteries of Apolipoprotein E Knock‐Out Mice
title_short Irradiation Accelerates Plaque Formation and Cellular Senescence in Flow‐Altered Carotid Arteries of Apolipoprotein E Knock‐Out Mice
title_sort irradiation accelerates plaque formation and cellular senescence in flow‐altered carotid arteries of apolipoprotein e knock‐out mice
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8483483/
https://www.ncbi.nlm.nih.gov/pubmed/34227406
http://dx.doi.org/10.1161/JAHA.120.020712
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