Genetic characterization of a unique neuroendocrine transdifferentiation prostate circulating tumor cell-derived eXplant model

Better tumor models are needed for the neuroendocrine subtype of castration resistant prostate cancer (CRPC-NE). Here, the authors develop patient-derived model from circulating tumor cells of a CRPC-NE patient, and provide insights on the sequential acquisition of driver gene mutations promoting NE...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Vincent Faugeroux, Emma Pailler, Marianne Oulhen, Olivier Deas, Laura Brulle-Soumare, Céline Hervieu, Virginie Marty, Kamelia Alexandrova, Kiki C. Andree, Nikolas H. Stoecklein, Dominique Tramalloni, Stefano Cairo, Maud NgoCamus, Claudio Nicotra, Leon W. M. M. Terstappen, Nicolo Manaresi, Valérie Lapierre, Karim Fizazi, Jean-Yves Scoazec, Yohann Loriot, Jean-Gabriel Judde, Françoise Farace
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
Materias:
Q
Acceso en línea:https://doaj.org/article/3ccca0e5b5dc46c78df201565348528a
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:3ccca0e5b5dc46c78df201565348528a
record_format dspace
spelling oai:doaj.org-article:3ccca0e5b5dc46c78df201565348528a2021-12-02T14:41:23ZGenetic characterization of a unique neuroendocrine transdifferentiation prostate circulating tumor cell-derived eXplant model10.1038/s41467-020-15426-22041-1723https://doaj.org/article/3ccca0e5b5dc46c78df201565348528a2020-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-15426-2https://doaj.org/toc/2041-1723Better tumor models are needed for the neuroendocrine subtype of castration resistant prostate cancer (CRPC-NE). Here, the authors develop patient-derived model from circulating tumor cells of a CRPC-NE patient, and provide insights on the sequential acquisition of driver gene mutations promoting NE transdifferentiation.Vincent FaugerouxEmma PaillerMarianne OulhenOlivier DeasLaura Brulle-SoumareCéline HervieuVirginie MartyKamelia AlexandrovaKiki C. AndreeNikolas H. StoeckleinDominique TramalloniStefano CairoMaud NgoCamusClaudio NicotraLeon W. M. M. TerstappenNicolo ManaresiValérie LapierreKarim FizaziJean-Yves ScoazecYohann LoriotJean-Gabriel JuddeFrançoise FaraceNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-16 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Vincent Faugeroux
Emma Pailler
Marianne Oulhen
Olivier Deas
Laura Brulle-Soumare
Céline Hervieu
Virginie Marty
Kamelia Alexandrova
Kiki C. Andree
Nikolas H. Stoecklein
Dominique Tramalloni
Stefano Cairo
Maud NgoCamus
Claudio Nicotra
Leon W. M. M. Terstappen
Nicolo Manaresi
Valérie Lapierre
Karim Fizazi
Jean-Yves Scoazec
Yohann Loriot
Jean-Gabriel Judde
Françoise Farace
Genetic characterization of a unique neuroendocrine transdifferentiation prostate circulating tumor cell-derived eXplant model
description Better tumor models are needed for the neuroendocrine subtype of castration resistant prostate cancer (CRPC-NE). Here, the authors develop patient-derived model from circulating tumor cells of a CRPC-NE patient, and provide insights on the sequential acquisition of driver gene mutations promoting NE transdifferentiation.
format article
author Vincent Faugeroux
Emma Pailler
Marianne Oulhen
Olivier Deas
Laura Brulle-Soumare
Céline Hervieu
Virginie Marty
Kamelia Alexandrova
Kiki C. Andree
Nikolas H. Stoecklein
Dominique Tramalloni
Stefano Cairo
Maud NgoCamus
Claudio Nicotra
Leon W. M. M. Terstappen
Nicolo Manaresi
Valérie Lapierre
Karim Fizazi
Jean-Yves Scoazec
Yohann Loriot
Jean-Gabriel Judde
Françoise Farace
author_facet Vincent Faugeroux
Emma Pailler
Marianne Oulhen
Olivier Deas
Laura Brulle-Soumare
Céline Hervieu
Virginie Marty
Kamelia Alexandrova
Kiki C. Andree
Nikolas H. Stoecklein
Dominique Tramalloni
Stefano Cairo
Maud NgoCamus
Claudio Nicotra
Leon W. M. M. Terstappen
Nicolo Manaresi
Valérie Lapierre
Karim Fizazi
Jean-Yves Scoazec
Yohann Loriot
Jean-Gabriel Judde
Françoise Farace
author_sort Vincent Faugeroux
title Genetic characterization of a unique neuroendocrine transdifferentiation prostate circulating tumor cell-derived eXplant model
title_short Genetic characterization of a unique neuroendocrine transdifferentiation prostate circulating tumor cell-derived eXplant model
title_full Genetic characterization of a unique neuroendocrine transdifferentiation prostate circulating tumor cell-derived eXplant model
title_fullStr Genetic characterization of a unique neuroendocrine transdifferentiation prostate circulating tumor cell-derived eXplant model
title_full_unstemmed Genetic characterization of a unique neuroendocrine transdifferentiation prostate circulating tumor cell-derived eXplant model
title_sort genetic characterization of a unique neuroendocrine transdifferentiation prostate circulating tumor cell-derived explant model
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/3ccca0e5b5dc46c78df201565348528a
work_keys_str_mv AT vincentfaugeroux geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT emmapailler geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT marianneoulhen geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT olivierdeas geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT laurabrullesoumare geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT celinehervieu geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT virginiemarty geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT kameliaalexandrova geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT kikicandree geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT nikolashstoecklein geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT dominiquetramalloni geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT stefanocairo geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT maudngocamus geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT claudionicotra geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT leonwmmterstappen geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT nicolomanaresi geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT valerielapierre geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT karimfizazi geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT jeanyvesscoazec geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT yohannloriot geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT jeangabrieljudde geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
AT francoisefarace geneticcharacterizationofauniqueneuroendocrinetransdifferentiationprostatecirculatingtumorcellderivedexplantmodel
_version_ 1718389864925233152