Defective homologous recombination DNA repair as therapeutic target in advanced chordoma

Chordomas are rare bone tumors with limited therapeutic options. Here, the authors identify molecular alterations associated with defective homologous recombination DNA repair in advanced chordomas and report prolonged response in a patient treated with a PARP inhibitor, which later acquired resista...

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Autores principales: Stefan Gröschel, Daniel Hübschmann, Francesco Raimondi, Peter Horak, Gregor Warsow, Martina Fröhlich, Barbara Klink, Laura Gieldon, Barbara Hutter, Kortine Kleinheinz, David Bonekamp, Oliver Marschal, Priya Chudasama, Jagoda Mika, Marie Groth, Sebastian Uhrig, Stephen Krämer, Christoph Heining, Christoph E. Heilig, Daniela Richter, Eva Reisinger, Katrin Pfütze, Roland Eils, Stephan Wolf, Christof von Kalle, Christian Brandts, Claudia Scholl, Wilko Weichert, Stephan Richter, Sebastian Bauer, Roland Penzel, Evelin Schröck, Albrecht Stenzinger, Richard F. Schlenk, Benedikt Brors, Robert B. Russell, Hanno Glimm, Matthias Schlesner, Stefan Fröhling
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/ba10289481024dc5944d84dae65732a8
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spelling oai:doaj.org-article:ba10289481024dc5944d84dae65732a82021-12-02T14:35:50ZDefective homologous recombination DNA repair as therapeutic target in advanced chordoma10.1038/s41467-019-09633-92041-1723https://doaj.org/article/ba10289481024dc5944d84dae65732a82019-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09633-9https://doaj.org/toc/2041-1723Chordomas are rare bone tumors with limited therapeutic options. Here, the authors identify molecular alterations associated with defective homologous recombination DNA repair in advanced chordomas and report prolonged response in a patient treated with a PARP inhibitor, which later acquired resistance due to a newly gained PARP1 mutation.Stefan GröschelDaniel HübschmannFrancesco RaimondiPeter HorakGregor WarsowMartina FröhlichBarbara KlinkLaura GieldonBarbara HutterKortine KleinheinzDavid BonekampOliver MarschalPriya ChudasamaJagoda MikaMarie GrothSebastian UhrigStephen KrämerChristoph HeiningChristoph E. HeiligDaniela RichterEva ReisingerKatrin PfützeRoland EilsStephan WolfChristof von KalleChristian BrandtsClaudia SchollWilko WeichertStephan RichterSebastian BauerRoland PenzelEvelin SchröckAlbrecht StenzingerRichard F. SchlenkBenedikt BrorsRobert B. RussellHanno GlimmMatthias SchlesnerStefan FröhlingNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-9 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Stefan Gröschel
Daniel Hübschmann
Francesco Raimondi
Peter Horak
Gregor Warsow
Martina Fröhlich
Barbara Klink
Laura Gieldon
Barbara Hutter
Kortine Kleinheinz
David Bonekamp
Oliver Marschal
Priya Chudasama
Jagoda Mika
Marie Groth
Sebastian Uhrig
Stephen Krämer
Christoph Heining
Christoph E. Heilig
Daniela Richter
Eva Reisinger
Katrin Pfütze
Roland Eils
Stephan Wolf
Christof von Kalle
Christian Brandts
Claudia Scholl
Wilko Weichert
Stephan Richter
Sebastian Bauer
Roland Penzel
Evelin Schröck
Albrecht Stenzinger
Richard F. Schlenk
Benedikt Brors
Robert B. Russell
Hanno Glimm
Matthias Schlesner
Stefan Fröhling
Defective homologous recombination DNA repair as therapeutic target in advanced chordoma
description Chordomas are rare bone tumors with limited therapeutic options. Here, the authors identify molecular alterations associated with defective homologous recombination DNA repair in advanced chordomas and report prolonged response in a patient treated with a PARP inhibitor, which later acquired resistance due to a newly gained PARP1 mutation.
format article
author Stefan Gröschel
Daniel Hübschmann
Francesco Raimondi
Peter Horak
Gregor Warsow
Martina Fröhlich
Barbara Klink
Laura Gieldon
Barbara Hutter
Kortine Kleinheinz
David Bonekamp
Oliver Marschal
Priya Chudasama
Jagoda Mika
Marie Groth
Sebastian Uhrig
Stephen Krämer
Christoph Heining
Christoph E. Heilig
Daniela Richter
Eva Reisinger
Katrin Pfütze
Roland Eils
Stephan Wolf
Christof von Kalle
Christian Brandts
Claudia Scholl
Wilko Weichert
Stephan Richter
Sebastian Bauer
Roland Penzel
Evelin Schröck
Albrecht Stenzinger
Richard F. Schlenk
Benedikt Brors
Robert B. Russell
Hanno Glimm
Matthias Schlesner
Stefan Fröhling
author_facet Stefan Gröschel
Daniel Hübschmann
Francesco Raimondi
Peter Horak
Gregor Warsow
Martina Fröhlich
Barbara Klink
Laura Gieldon
Barbara Hutter
Kortine Kleinheinz
David Bonekamp
Oliver Marschal
Priya Chudasama
Jagoda Mika
Marie Groth
Sebastian Uhrig
Stephen Krämer
Christoph Heining
Christoph E. Heilig
Daniela Richter
Eva Reisinger
Katrin Pfütze
Roland Eils
Stephan Wolf
Christof von Kalle
Christian Brandts
Claudia Scholl
Wilko Weichert
Stephan Richter
Sebastian Bauer
Roland Penzel
Evelin Schröck
Albrecht Stenzinger
Richard F. Schlenk
Benedikt Brors
Robert B. Russell
Hanno Glimm
Matthias Schlesner
Stefan Fröhling
author_sort Stefan Gröschel
title Defective homologous recombination DNA repair as therapeutic target in advanced chordoma
title_short Defective homologous recombination DNA repair as therapeutic target in advanced chordoma
title_full Defective homologous recombination DNA repair as therapeutic target in advanced chordoma
title_fullStr Defective homologous recombination DNA repair as therapeutic target in advanced chordoma
title_full_unstemmed Defective homologous recombination DNA repair as therapeutic target in advanced chordoma
title_sort defective homologous recombination dna repair as therapeutic target in advanced chordoma
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/ba10289481024dc5944d84dae65732a8
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