Hepatic resistance to cold ferroptosis in a mammalian hibernator Syrian hamster depends on effective storage of diet-derived α-tocopherol

Daisuke Anegawa et al. investigated the mechanisms responsible for cold resistance in the Syrian hamster’s hepatocytes, which exhibited remarkable resistance to prolonged cold culture. Their results suggest that hepatocytes exhibit diet-dependent resistance to cold, which is linked to the retention...

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Main Authors: Daisuke Anegawa, Yuki Sugiura, Yuta Matsuoka, Masamitsu Sone, Mototada Shichiri, Reo Otsuka, Noriko Ishida, Ken-ichi Yamada, Makoto Suematsu, Masayuki Miura, Yoshifumi Yamaguchi
Format: Article
Language:English
Published: Nature Portfolio 2021-06-01
Series:Communications Biology
Online Access:https://doi.org/10.1038/s42003-021-02297-6
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author Daisuke Anegawa
Yuki Sugiura
Yuta Matsuoka
Masamitsu Sone
Mototada Shichiri
Reo Otsuka
Noriko Ishida
Ken-ichi Yamada
Makoto Suematsu
Masayuki Miura
Yoshifumi Yamaguchi
author_facet Daisuke Anegawa
Yuki Sugiura
Yuta Matsuoka
Masamitsu Sone
Mototada Shichiri
Reo Otsuka
Noriko Ishida
Ken-ichi Yamada
Makoto Suematsu
Masayuki Miura
Yoshifumi Yamaguchi
author_sort Daisuke Anegawa
collection DOAJ
description Daisuke Anegawa et al. investigated the mechanisms responsible for cold resistance in the Syrian hamster’s hepatocytes, which exhibited remarkable resistance to prolonged cold culture. Their results suggest that hepatocytes exhibit diet-dependent resistance to cold, which is linked to the retention of α-tocopherol in the liver.
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spelling doaj.art-5490d4cebb014a8388a70e5323d720172022-12-21T22:59:49ZengNature PortfolioCommunications Biology2399-36422021-06-014111110.1038/s42003-021-02297-6Hepatic resistance to cold ferroptosis in a mammalian hibernator Syrian hamster depends on effective storage of diet-derived α-tocopherolDaisuke Anegawa0Yuki Sugiura1Yuta Matsuoka2Masamitsu Sone3Mototada Shichiri4Reo Otsuka5Noriko Ishida6Ken-ichi Yamada7Makoto Suematsu8Masayuki Miura9Yoshifumi Yamaguchi10Hibernation Metabolism, Physiology and Development Group, Institute of Low Temperature Science, Hokkaido UniversityDepartment of Biochemistry, Keio University School of MedicinePhysical Chemistry for Life Science Laboratory, Faculty of Pharmaceutical Sciences, Kyushu UniversityHibernation Metabolism, Physiology and Development Group, Institute of Low Temperature Science, Hokkaido UniversityBiomedical Research Institute, National Institute of Advanced Industrial Science and Technology (AIST)Hibernation Metabolism, Physiology and Development Group, Institute of Low Temperature Science, Hokkaido UniversityBiomedical Research Institute, National Institute of Advanced Industrial Science and Technology (AIST)Physical Chemistry for Life Science Laboratory, Faculty of Pharmaceutical Sciences, Kyushu UniversityDepartment of Biochemistry, Keio University School of MedicineDepartment of Genetics, Graduate School of Pharmaceutical Sciences, The University of TokyoHibernation Metabolism, Physiology and Development Group, Institute of Low Temperature Science, Hokkaido UniversityDaisuke Anegawa et al. investigated the mechanisms responsible for cold resistance in the Syrian hamster’s hepatocytes, which exhibited remarkable resistance to prolonged cold culture. Their results suggest that hepatocytes exhibit diet-dependent resistance to cold, which is linked to the retention of α-tocopherol in the liver.https://doi.org/10.1038/s42003-021-02297-6
spellingShingle Daisuke Anegawa
Yuki Sugiura
Yuta Matsuoka
Masamitsu Sone
Mototada Shichiri
Reo Otsuka
Noriko Ishida
Ken-ichi Yamada
Makoto Suematsu
Masayuki Miura
Yoshifumi Yamaguchi
Hepatic resistance to cold ferroptosis in a mammalian hibernator Syrian hamster depends on effective storage of diet-derived α-tocopherol
Communications Biology
title Hepatic resistance to cold ferroptosis in a mammalian hibernator Syrian hamster depends on effective storage of diet-derived α-tocopherol
title_full Hepatic resistance to cold ferroptosis in a mammalian hibernator Syrian hamster depends on effective storage of diet-derived α-tocopherol
title_fullStr Hepatic resistance to cold ferroptosis in a mammalian hibernator Syrian hamster depends on effective storage of diet-derived α-tocopherol
title_full_unstemmed Hepatic resistance to cold ferroptosis in a mammalian hibernator Syrian hamster depends on effective storage of diet-derived α-tocopherol
title_short Hepatic resistance to cold ferroptosis in a mammalian hibernator Syrian hamster depends on effective storage of diet-derived α-tocopherol
title_sort hepatic resistance to cold ferroptosis in a mammalian hibernator syrian hamster depends on effective storage of diet derived α tocopherol
url https://doi.org/10.1038/s42003-021-02297-6
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