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Brown adipose tissue dysfunction promotes heart failure via a trimethylamine N-oxide-dependent mechanism

Low body temperature predicts a poor outcome in patients with heart failure, but the underlying pathological mechanisms and implications are largely unknown. Brown adipose tissue (BAT) was initially characterised as a thermogenic organ, and recent studies have suggested it plays a crucial role in ma...

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Autores principales: Yoshida, Yohko, Shimizu, Ippei, Shimada, Atsuhiro, Nakahara, Keita, Yanagisawa, Sachiko, Kubo, Minoru, Fukuda, Shinji, Ishii, Chiharu, Yamamoto, Hiromitsu, Ishikawa, Takamasa, Kano, Kuniyuki, Aoki, Junken, Katsuumi, Goro, Suda, Masayoshi, Ozaki, Kazuyuki, Yoshida, Yutaka, Okuda, Shujiro, Ohta, Shigeo, Okamoto, Shiki, Minokoshi, Yasuhiko, Oda, Kanako, Sasaoka, Toshikuni, Abe, Manabu, Sakimura, Kenji, Kubota, Yoshiaki, Yoshimura, Norihiko, Kajimura, Shingo, Zuriaga, Maria, Walsh, Kenneth, Soga, Tomoyoshi, Minamino, Tohru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9436957/
https://www.ncbi.nlm.nih.gov/pubmed/36050466
http://dx.doi.org/10.1038/s41598-022-19245-x
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author Yoshida, Yohko
Shimizu, Ippei
Shimada, Atsuhiro
Nakahara, Keita
Yanagisawa, Sachiko
Kubo, Minoru
Fukuda, Shinji
Ishii, Chiharu
Yamamoto, Hiromitsu
Ishikawa, Takamasa
Kano, Kuniyuki
Aoki, Junken
Katsuumi, Goro
Suda, Masayoshi
Ozaki, Kazuyuki
Yoshida, Yutaka
Okuda, Shujiro
Ohta, Shigeo
Okamoto, Shiki
Minokoshi, Yasuhiko
Oda, Kanako
Sasaoka, Toshikuni
Abe, Manabu
Sakimura, Kenji
Kubota, Yoshiaki
Yoshimura, Norihiko
Kajimura, Shingo
Zuriaga, Maria
Walsh, Kenneth
Soga, Tomoyoshi
Minamino, Tohru
author_facet Yoshida, Yohko
Shimizu, Ippei
Shimada, Atsuhiro
Nakahara, Keita
Yanagisawa, Sachiko
Kubo, Minoru
Fukuda, Shinji
Ishii, Chiharu
Yamamoto, Hiromitsu
Ishikawa, Takamasa
Kano, Kuniyuki
Aoki, Junken
Katsuumi, Goro
Suda, Masayoshi
Ozaki, Kazuyuki
Yoshida, Yutaka
Okuda, Shujiro
Ohta, Shigeo
Okamoto, Shiki
Minokoshi, Yasuhiko
Oda, Kanako
Sasaoka, Toshikuni
Abe, Manabu
Sakimura, Kenji
Kubota, Yoshiaki
Yoshimura, Norihiko
Kajimura, Shingo
Zuriaga, Maria
Walsh, Kenneth
Soga, Tomoyoshi
Minamino, Tohru
author_sort Yoshida, Yohko
collection PubMed
description Low body temperature predicts a poor outcome in patients with heart failure, but the underlying pathological mechanisms and implications are largely unknown. Brown adipose tissue (BAT) was initially characterised as a thermogenic organ, and recent studies have suggested it plays a crucial role in maintaining systemic metabolic health. While these reports suggest a potential link between BAT and heart failure, the potential role of BAT dysfunction in heart failure has not been investigated. Here, we demonstrate that alteration of BAT function contributes to development of heart failure through disorientation in choline metabolism. Thoracic aortic constriction (TAC) or myocardial infarction (MI) reduced the thermogenic capacity of BAT in mice, leading to significant reduction of body temperature with cold exposure. BAT became hypoxic with TAC or MI, and hypoxic stress induced apoptosis of brown adipocytes. Enhancement of BAT function improved thermogenesis and cardiac function in TAC mice. Conversely, systolic function was impaired in a mouse model of genetic BAT dysfunction, in association with a low survival rate after TAC. Metabolomic analysis showed that reduced BAT thermogenesis was associated with elevation of plasma trimethylamine N-oxide (TMAO) levels. Administration of TMAO to mice led to significant reduction of phosphocreatine and ATP levels in cardiac tissue via suppression of mitochondrial complex IV activity. Genetic or pharmacological inhibition of flavin-containing monooxygenase reduced the plasma TMAO level in mice, and improved cardiac dysfunction in animals with left ventricular pressure overload. In patients with dilated cardiomyopathy, body temperature was low along with elevation of plasma choline and TMAO levels. These results suggest that maintenance of BAT homeostasis and reducing TMAO production could be potential next-generation therapies for heart failure.
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spelling pubmed-94369572022-09-03 Brown adipose tissue dysfunction promotes heart failure via a trimethylamine N-oxide-dependent mechanism Yoshida, Yohko Shimizu, Ippei Shimada, Atsuhiro Nakahara, Keita Yanagisawa, Sachiko Kubo, Minoru Fukuda, Shinji Ishii, Chiharu Yamamoto, Hiromitsu Ishikawa, Takamasa Kano, Kuniyuki Aoki, Junken Katsuumi, Goro Suda, Masayoshi Ozaki, Kazuyuki Yoshida, Yutaka Okuda, Shujiro Ohta, Shigeo Okamoto, Shiki Minokoshi, Yasuhiko Oda, Kanako Sasaoka, Toshikuni Abe, Manabu Sakimura, Kenji Kubota, Yoshiaki Yoshimura, Norihiko Kajimura, Shingo Zuriaga, Maria Walsh, Kenneth Soga, Tomoyoshi Minamino, Tohru Sci Rep Article Low body temperature predicts a poor outcome in patients with heart failure, but the underlying pathological mechanisms and implications are largely unknown. Brown adipose tissue (BAT) was initially characterised as a thermogenic organ, and recent studies have suggested it plays a crucial role in maintaining systemic metabolic health. While these reports suggest a potential link between BAT and heart failure, the potential role of BAT dysfunction in heart failure has not been investigated. Here, we demonstrate that alteration of BAT function contributes to development of heart failure through disorientation in choline metabolism. Thoracic aortic constriction (TAC) or myocardial infarction (MI) reduced the thermogenic capacity of BAT in mice, leading to significant reduction of body temperature with cold exposure. BAT became hypoxic with TAC or MI, and hypoxic stress induced apoptosis of brown adipocytes. Enhancement of BAT function improved thermogenesis and cardiac function in TAC mice. Conversely, systolic function was impaired in a mouse model of genetic BAT dysfunction, in association with a low survival rate after TAC. Metabolomic analysis showed that reduced BAT thermogenesis was associated with elevation of plasma trimethylamine N-oxide (TMAO) levels. Administration of TMAO to mice led to significant reduction of phosphocreatine and ATP levels in cardiac tissue via suppression of mitochondrial complex IV activity. Genetic or pharmacological inhibition of flavin-containing monooxygenase reduced the plasma TMAO level in mice, and improved cardiac dysfunction in animals with left ventricular pressure overload. In patients with dilated cardiomyopathy, body temperature was low along with elevation of plasma choline and TMAO levels. These results suggest that maintenance of BAT homeostasis and reducing TMAO production could be potential next-generation therapies for heart failure. Nature Publishing Group UK 2022-09-01 /pmc/articles/PMC9436957/ /pubmed/36050466 http://dx.doi.org/10.1038/s41598-022-19245-x Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Yoshida, Yohko
Shimizu, Ippei
Shimada, Atsuhiro
Nakahara, Keita
Yanagisawa, Sachiko
Kubo, Minoru
Fukuda, Shinji
Ishii, Chiharu
Yamamoto, Hiromitsu
Ishikawa, Takamasa
Kano, Kuniyuki
Aoki, Junken
Katsuumi, Goro
Suda, Masayoshi
Ozaki, Kazuyuki
Yoshida, Yutaka
Okuda, Shujiro
Ohta, Shigeo
Okamoto, Shiki
Minokoshi, Yasuhiko
Oda, Kanako
Sasaoka, Toshikuni
Abe, Manabu
Sakimura, Kenji
Kubota, Yoshiaki
Yoshimura, Norihiko
Kajimura, Shingo
Zuriaga, Maria
Walsh, Kenneth
Soga, Tomoyoshi
Minamino, Tohru
Brown adipose tissue dysfunction promotes heart failure via a trimethylamine N-oxide-dependent mechanism
title Brown adipose tissue dysfunction promotes heart failure via a trimethylamine N-oxide-dependent mechanism
title_full Brown adipose tissue dysfunction promotes heart failure via a trimethylamine N-oxide-dependent mechanism
title_fullStr Brown adipose tissue dysfunction promotes heart failure via a trimethylamine N-oxide-dependent mechanism
title_full_unstemmed Brown adipose tissue dysfunction promotes heart failure via a trimethylamine N-oxide-dependent mechanism
title_short Brown adipose tissue dysfunction promotes heart failure via a trimethylamine N-oxide-dependent mechanism
title_sort brown adipose tissue dysfunction promotes heart failure via a trimethylamine n-oxide-dependent mechanism
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9436957/
https://www.ncbi.nlm.nih.gov/pubmed/36050466
http://dx.doi.org/10.1038/s41598-022-19245-x
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