Single-cell analysis based dissection of clonality in myelofibrosis

Myelofibrosis is a myeloproliferative neoplasm. Here, the authors show the clonal evolution of myelofibrosis during JAK inhibitor therapy, revealing how the treatment results in an increase in clonal complexity and a gain of RAS pathway mutations.

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Autores principales: Elena Mylonas, Kenichi Yoshida, Mareike Frick, Kaja Hoyer, Friederike Christen, Jaspal Kaeda, Matthias Obenaus, Daniel Noerenberg, Cornelius Hennch, Willy Chan, Yotaro Ochi, Yuichi Shiraishi, Yusuke Shiozawa, Thorsten Zenz, Christopher C. Oakes, Birgit Sawitzki, Michaela Schwarz, Lars Bullinger, Philipp le Coutre, Matthew J. J. Rose-Zerilli, Seishi Ogawa, Frederik Damm
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/7e23582169274e9ab60ff7109190fa37
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spelling oai:doaj.org-article:7e23582169274e9ab60ff7109190fa372021-12-02T17:32:28ZSingle-cell analysis based dissection of clonality in myelofibrosis10.1038/s41467-019-13892-x2041-1723https://doaj.org/article/7e23582169274e9ab60ff7109190fa372020-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13892-xhttps://doaj.org/toc/2041-1723Myelofibrosis is a myeloproliferative neoplasm. Here, the authors show the clonal evolution of myelofibrosis during JAK inhibitor therapy, revealing how the treatment results in an increase in clonal complexity and a gain of RAS pathway mutations.Elena MylonasKenichi YoshidaMareike FrickKaja HoyerFriederike ChristenJaspal KaedaMatthias ObenausDaniel NoerenbergCornelius HennchWilly ChanYotaro OchiYuichi ShiraishiYusuke ShiozawaThorsten ZenzChristopher C. OakesBirgit SawitzkiMichaela SchwarzLars BullingerPhilipp le CoutreMatthew J. J. Rose-ZerilliSeishi OgawaFrederik DammNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Elena Mylonas
Kenichi Yoshida
Mareike Frick
Kaja Hoyer
Friederike Christen
Jaspal Kaeda
Matthias Obenaus
Daniel Noerenberg
Cornelius Hennch
Willy Chan
Yotaro Ochi
Yuichi Shiraishi
Yusuke Shiozawa
Thorsten Zenz
Christopher C. Oakes
Birgit Sawitzki
Michaela Schwarz
Lars Bullinger
Philipp le Coutre
Matthew J. J. Rose-Zerilli
Seishi Ogawa
Frederik Damm
Single-cell analysis based dissection of clonality in myelofibrosis
description Myelofibrosis is a myeloproliferative neoplasm. Here, the authors show the clonal evolution of myelofibrosis during JAK inhibitor therapy, revealing how the treatment results in an increase in clonal complexity and a gain of RAS pathway mutations.
format article
author Elena Mylonas
Kenichi Yoshida
Mareike Frick
Kaja Hoyer
Friederike Christen
Jaspal Kaeda
Matthias Obenaus
Daniel Noerenberg
Cornelius Hennch
Willy Chan
Yotaro Ochi
Yuichi Shiraishi
Yusuke Shiozawa
Thorsten Zenz
Christopher C. Oakes
Birgit Sawitzki
Michaela Schwarz
Lars Bullinger
Philipp le Coutre
Matthew J. J. Rose-Zerilli
Seishi Ogawa
Frederik Damm
author_facet Elena Mylonas
Kenichi Yoshida
Mareike Frick
Kaja Hoyer
Friederike Christen
Jaspal Kaeda
Matthias Obenaus
Daniel Noerenberg
Cornelius Hennch
Willy Chan
Yotaro Ochi
Yuichi Shiraishi
Yusuke Shiozawa
Thorsten Zenz
Christopher C. Oakes
Birgit Sawitzki
Michaela Schwarz
Lars Bullinger
Philipp le Coutre
Matthew J. J. Rose-Zerilli
Seishi Ogawa
Frederik Damm
author_sort Elena Mylonas
title Single-cell analysis based dissection of clonality in myelofibrosis
title_short Single-cell analysis based dissection of clonality in myelofibrosis
title_full Single-cell analysis based dissection of clonality in myelofibrosis
title_fullStr Single-cell analysis based dissection of clonality in myelofibrosis
title_full_unstemmed Single-cell analysis based dissection of clonality in myelofibrosis
title_sort single-cell analysis based dissection of clonality in myelofibrosis
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/7e23582169274e9ab60ff7109190fa37
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