Cargando…

Metabolic Changes Precede Radiation‐Induced Cardiac Remodeling in Beagles: Using Noninvasive (18)F‐FDG ((18)F‐Fludeoxyglucose) and (13)N‐Ammonia Positron Emission Tomography/Computed Tomography Scans

BACKGROUND: This study was performed to characterize the metabolic, functional, and structural cardiac changes in a canine model of radiation‐induced heart disease by serial in vivo imaging and ex vivo analyses. METHODS AND RESULTS: Thirty‐six dogs were randomly assigned to control or irradiated gro...

Descripción completa

Detalles Bibliográficos
Autores principales: Yan, Rui, Li, Xiang, Song, Jianbo, Guo, Min, Cai, Honghong, Wu, Zhifang, Wu, Ping, Li, Li, Yang, Minfu, Wang, Yuetao, Li, Sijin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7727013/
https://www.ncbi.nlm.nih.gov/pubmed/32914660
http://dx.doi.org/10.1161/JAHA.120.016875
_version_ 1783621011177996288
author Yan, Rui
Li, Xiang
Song, Jianbo
Guo, Min
Cai, Honghong
Wu, Zhifang
Wu, Ping
Li, Li
Yang, Minfu
Wang, Yuetao
Li, Sijin
author_facet Yan, Rui
Li, Xiang
Song, Jianbo
Guo, Min
Cai, Honghong
Wu, Zhifang
Wu, Ping
Li, Li
Yang, Minfu
Wang, Yuetao
Li, Sijin
author_sort Yan, Rui
collection PubMed
description BACKGROUND: This study was performed to characterize the metabolic, functional, and structural cardiac changes in a canine model of radiation‐induced heart disease by serial in vivo imaging and ex vivo analyses. METHODS AND RESULTS: Thirty‐six dogs were randomly assigned to control or irradiated groups at 3 time points (months 3, 6, and 12 after radiation; each group comprised 6 dogs). The left anterior myocardium of dogs in irradiated groups was irradiated locally with a single dose of 20‐Gy X‐ray. The irradiated myocardial regions showed increased myocardial uptake of (18)F‐FDG ((18)F‐fludeoxyglucose) in the irradiated beagles, but the increased uptake area decreased at months 6 and 12 compared with month 3 after radiation. Abnormality of myocardial perfusion and cardiac function were detected at month 6 after radiation. Compared with the control groups, the protein expression of GLUT4 (glucose transporter 4) was upregulated in the irradiated groups, correlating with significantly decreased CPT1 (carnitine acyltransferase 1) expression. Mitochondria degeneration, swelling, and count reduction in the irradiated groups were observed. The difference in CD68 of macrophage markers and the inflammatory cytokines (IL‐6 [interleukin 6], TNF‐α [tumor necrosis factor α]) between the irradiation and control groups was not significant. Furthermore, the progressive aggravation of apoptosis and fibrosis was displayed. CONCLUSIONS: Elevated (18)F‐FDG uptake occurred after irradiation and subsequently led to ventricular perfusion defects and dysfunction. The process was associated with myocardial metabolic substrate remodeling, cardiac muscle cell apoptosis, and myocardial fibrosis rather than inflammation.
format Online
Article
Text
id pubmed-7727013
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-77270132020-12-13 Metabolic Changes Precede Radiation‐Induced Cardiac Remodeling in Beagles: Using Noninvasive (18)F‐FDG ((18)F‐Fludeoxyglucose) and (13)N‐Ammonia Positron Emission Tomography/Computed Tomography Scans Yan, Rui Li, Xiang Song, Jianbo Guo, Min Cai, Honghong Wu, Zhifang Wu, Ping Li, Li Yang, Minfu Wang, Yuetao Li, Sijin J Am Heart Assoc Original Research BACKGROUND: This study was performed to characterize the metabolic, functional, and structural cardiac changes in a canine model of radiation‐induced heart disease by serial in vivo imaging and ex vivo analyses. METHODS AND RESULTS: Thirty‐six dogs were randomly assigned to control or irradiated groups at 3 time points (months 3, 6, and 12 after radiation; each group comprised 6 dogs). The left anterior myocardium of dogs in irradiated groups was irradiated locally with a single dose of 20‐Gy X‐ray. The irradiated myocardial regions showed increased myocardial uptake of (18)F‐FDG ((18)F‐fludeoxyglucose) in the irradiated beagles, but the increased uptake area decreased at months 6 and 12 compared with month 3 after radiation. Abnormality of myocardial perfusion and cardiac function were detected at month 6 after radiation. Compared with the control groups, the protein expression of GLUT4 (glucose transporter 4) was upregulated in the irradiated groups, correlating with significantly decreased CPT1 (carnitine acyltransferase 1) expression. Mitochondria degeneration, swelling, and count reduction in the irradiated groups were observed. The difference in CD68 of macrophage markers and the inflammatory cytokines (IL‐6 [interleukin 6], TNF‐α [tumor necrosis factor α]) between the irradiation and control groups was not significant. Furthermore, the progressive aggravation of apoptosis and fibrosis was displayed. CONCLUSIONS: Elevated (18)F‐FDG uptake occurred after irradiation and subsequently led to ventricular perfusion defects and dysfunction. The process was associated with myocardial metabolic substrate remodeling, cardiac muscle cell apoptosis, and myocardial fibrosis rather than inflammation. John Wiley and Sons Inc. 2020-09-11 /pmc/articles/PMC7727013/ /pubmed/32914660 http://dx.doi.org/10.1161/JAHA.120.016875 Text en © 2020 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley. This is an open access article under the terms of the http://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
Yan, Rui
Li, Xiang
Song, Jianbo
Guo, Min
Cai, Honghong
Wu, Zhifang
Wu, Ping
Li, Li
Yang, Minfu
Wang, Yuetao
Li, Sijin
Metabolic Changes Precede Radiation‐Induced Cardiac Remodeling in Beagles: Using Noninvasive (18)F‐FDG ((18)F‐Fludeoxyglucose) and (13)N‐Ammonia Positron Emission Tomography/Computed Tomography Scans
title Metabolic Changes Precede Radiation‐Induced Cardiac Remodeling in Beagles: Using Noninvasive (18)F‐FDG ((18)F‐Fludeoxyglucose) and (13)N‐Ammonia Positron Emission Tomography/Computed Tomography Scans
title_full Metabolic Changes Precede Radiation‐Induced Cardiac Remodeling in Beagles: Using Noninvasive (18)F‐FDG ((18)F‐Fludeoxyglucose) and (13)N‐Ammonia Positron Emission Tomography/Computed Tomography Scans
title_fullStr Metabolic Changes Precede Radiation‐Induced Cardiac Remodeling in Beagles: Using Noninvasive (18)F‐FDG ((18)F‐Fludeoxyglucose) and (13)N‐Ammonia Positron Emission Tomography/Computed Tomography Scans
title_full_unstemmed Metabolic Changes Precede Radiation‐Induced Cardiac Remodeling in Beagles: Using Noninvasive (18)F‐FDG ((18)F‐Fludeoxyglucose) and (13)N‐Ammonia Positron Emission Tomography/Computed Tomography Scans
title_short Metabolic Changes Precede Radiation‐Induced Cardiac Remodeling in Beagles: Using Noninvasive (18)F‐FDG ((18)F‐Fludeoxyglucose) and (13)N‐Ammonia Positron Emission Tomography/Computed Tomography Scans
title_sort metabolic changes precede radiation‐induced cardiac remodeling in beagles: using noninvasive (18)f‐fdg ((18)f‐fludeoxyglucose) and (13)n‐ammonia positron emission tomography/computed tomography scans
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7727013/
https://www.ncbi.nlm.nih.gov/pubmed/32914660
http://dx.doi.org/10.1161/JAHA.120.016875
work_keys_str_mv AT yanrui metabolicchangesprecederadiationinducedcardiacremodelinginbeaglesusingnoninvasive18ffdg18ffludeoxyglucoseand13nammoniapositronemissiontomographycomputedtomographyscans
AT lixiang metabolicchangesprecederadiationinducedcardiacremodelinginbeaglesusingnoninvasive18ffdg18ffludeoxyglucoseand13nammoniapositronemissiontomographycomputedtomographyscans
AT songjianbo metabolicchangesprecederadiationinducedcardiacremodelinginbeaglesusingnoninvasive18ffdg18ffludeoxyglucoseand13nammoniapositronemissiontomographycomputedtomographyscans
AT guomin metabolicchangesprecederadiationinducedcardiacremodelinginbeaglesusingnoninvasive18ffdg18ffludeoxyglucoseand13nammoniapositronemissiontomographycomputedtomographyscans
AT caihonghong metabolicchangesprecederadiationinducedcardiacremodelinginbeaglesusingnoninvasive18ffdg18ffludeoxyglucoseand13nammoniapositronemissiontomographycomputedtomographyscans
AT wuzhifang metabolicchangesprecederadiationinducedcardiacremodelinginbeaglesusingnoninvasive18ffdg18ffludeoxyglucoseand13nammoniapositronemissiontomographycomputedtomographyscans
AT wuping metabolicchangesprecederadiationinducedcardiacremodelinginbeaglesusingnoninvasive18ffdg18ffludeoxyglucoseand13nammoniapositronemissiontomographycomputedtomographyscans
AT lili metabolicchangesprecederadiationinducedcardiacremodelinginbeaglesusingnoninvasive18ffdg18ffludeoxyglucoseand13nammoniapositronemissiontomographycomputedtomographyscans
AT yangminfu metabolicchangesprecederadiationinducedcardiacremodelinginbeaglesusingnoninvasive18ffdg18ffludeoxyglucoseand13nammoniapositronemissiontomographycomputedtomographyscans
AT wangyuetao metabolicchangesprecederadiationinducedcardiacremodelinginbeaglesusingnoninvasive18ffdg18ffludeoxyglucoseand13nammoniapositronemissiontomographycomputedtomographyscans
AT lisijin metabolicchangesprecederadiationinducedcardiacremodelinginbeaglesusingnoninvasive18ffdg18ffludeoxyglucoseand13nammoniapositronemissiontomographycomputedtomographyscans