Age-related injury responses of human oligodendrocytes to metabolic insults: link to BCL-2 and autophagy pathways

Milton Fernandes et al. combine single cell RNA-sequencing and functional assays to show that human oligodendrocytes exhibit an age-dependent resistance to apoptosis. Their findings have important implications for the pathology and treatment of myelination disorders like multiple sclerosis.

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Autores principales: Milton Guilherme Forestieri Fernandes, Julia Xiao Xuan Luo, Qiao-Ling Cui, Kelly Perlman, Florian Pernin, Moein Yaqubi, Jeffery A. Hall, Roy Dudley, Myriam Srour, Charles P. Couturier, Kevin Petrecca, Catherine Larochelle, Luke M. Healy, Jo Anne Stratton, Timothy E. Kennedy, Jack P. Antel
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/2f5ecb99de5f4c29b216220d02b72b5a
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spelling oai:doaj.org-article:2f5ecb99de5f4c29b216220d02b72b5a2021-12-02T15:13:16ZAge-related injury responses of human oligodendrocytes to metabolic insults: link to BCL-2 and autophagy pathways10.1038/s42003-020-01557-12399-3642https://doaj.org/article/2f5ecb99de5f4c29b216220d02b72b5a2021-01-01T00:00:00Zhttps://doi.org/10.1038/s42003-020-01557-1https://doaj.org/toc/2399-3642Milton Fernandes et al. combine single cell RNA-sequencing and functional assays to show that human oligodendrocytes exhibit an age-dependent resistance to apoptosis. Their findings have important implications for the pathology and treatment of myelination disorders like multiple sclerosis.Milton Guilherme Forestieri FernandesJulia Xiao Xuan LuoQiao-Ling CuiKelly PerlmanFlorian PerninMoein YaqubiJeffery A. HallRoy DudleyMyriam SrourCharles P. CouturierKevin PetreccaCatherine LarochelleLuke M. HealyJo Anne StrattonTimothy E. KennedyJack P. AntelNature PortfolioarticleBiology (General)QH301-705.5ENCommunications Biology, Vol 4, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Biology (General)
QH301-705.5
spellingShingle Biology (General)
QH301-705.5
Milton Guilherme Forestieri Fernandes
Julia Xiao Xuan Luo
Qiao-Ling Cui
Kelly Perlman
Florian Pernin
Moein Yaqubi
Jeffery A. Hall
Roy Dudley
Myriam Srour
Charles P. Couturier
Kevin Petrecca
Catherine Larochelle
Luke M. Healy
Jo Anne Stratton
Timothy E. Kennedy
Jack P. Antel
Age-related injury responses of human oligodendrocytes to metabolic insults: link to BCL-2 and autophagy pathways
description Milton Fernandes et al. combine single cell RNA-sequencing and functional assays to show that human oligodendrocytes exhibit an age-dependent resistance to apoptosis. Their findings have important implications for the pathology and treatment of myelination disorders like multiple sclerosis.
format article
author Milton Guilherme Forestieri Fernandes
Julia Xiao Xuan Luo
Qiao-Ling Cui
Kelly Perlman
Florian Pernin
Moein Yaqubi
Jeffery A. Hall
Roy Dudley
Myriam Srour
Charles P. Couturier
Kevin Petrecca
Catherine Larochelle
Luke M. Healy
Jo Anne Stratton
Timothy E. Kennedy
Jack P. Antel
author_facet Milton Guilherme Forestieri Fernandes
Julia Xiao Xuan Luo
Qiao-Ling Cui
Kelly Perlman
Florian Pernin
Moein Yaqubi
Jeffery A. Hall
Roy Dudley
Myriam Srour
Charles P. Couturier
Kevin Petrecca
Catherine Larochelle
Luke M. Healy
Jo Anne Stratton
Timothy E. Kennedy
Jack P. Antel
author_sort Milton Guilherme Forestieri Fernandes
title Age-related injury responses of human oligodendrocytes to metabolic insults: link to BCL-2 and autophagy pathways
title_short Age-related injury responses of human oligodendrocytes to metabolic insults: link to BCL-2 and autophagy pathways
title_full Age-related injury responses of human oligodendrocytes to metabolic insults: link to BCL-2 and autophagy pathways
title_fullStr Age-related injury responses of human oligodendrocytes to metabolic insults: link to BCL-2 and autophagy pathways
title_full_unstemmed Age-related injury responses of human oligodendrocytes to metabolic insults: link to BCL-2 and autophagy pathways
title_sort age-related injury responses of human oligodendrocytes to metabolic insults: link to bcl-2 and autophagy pathways
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/2f5ecb99de5f4c29b216220d02b72b5a
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