Spatial and temporal intratumour heterogeneity has potential consequences for single biopsy-based neuroblastoma treatment decisions

Neuroblastoma is a devastating tumour in children. Here, the authors analyse multi-region patient samples using genomics and transcriptomics, revealing temporal and spatial heterogeneity and questioning the reliability of single-biopsy based diagnostics.

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Autores principales: Karin Schmelz, Joern Toedling, Matt Huska, Maja C. Cwikla, Louisa-Marie Kruetzfeldt, Jutta Proba, Peter F. Ambros, Inge M. Ambros, Sengül Boral, Marco Lodrini, Celine Y. Chen, Martin Burkert, Dennis Guergen, Annabell Szymansky, Kathy Astrahantseff, Annette Kuenkele, Kerstin Haase, Matthias Fischer, Hedwig E. Deubzer, Falk Hertwig, Patrick Hundsdoerfer, Anton G. Henssen, Roland F. Schwarz, Johannes H. Schulte, Angelika Eggert
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/2390ab09b04a41c28245bac3ed08f2c9
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spelling oai:doaj.org-article:2390ab09b04a41c28245bac3ed08f2c92021-11-28T12:31:16ZSpatial and temporal intratumour heterogeneity has potential consequences for single biopsy-based neuroblastoma treatment decisions10.1038/s41467-021-26870-z2041-1723https://doaj.org/article/2390ab09b04a41c28245bac3ed08f2c92021-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-26870-zhttps://doaj.org/toc/2041-1723Neuroblastoma is a devastating tumour in children. Here, the authors analyse multi-region patient samples using genomics and transcriptomics, revealing temporal and spatial heterogeneity and questioning the reliability of single-biopsy based diagnostics.Karin SchmelzJoern ToedlingMatt HuskaMaja C. CwiklaLouisa-Marie KruetzfeldtJutta ProbaPeter F. AmbrosInge M. AmbrosSengül BoralMarco LodriniCeline Y. ChenMartin BurkertDennis GuergenAnnabell SzymanskyKathy AstrahantseffAnnette KuenkeleKerstin HaaseMatthias FischerHedwig E. DeubzerFalk HertwigPatrick HundsdoerferAnton G. HenssenRoland F. SchwarzJohannes H. SchulteAngelika EggertNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-13 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Karin Schmelz
Joern Toedling
Matt Huska
Maja C. Cwikla
Louisa-Marie Kruetzfeldt
Jutta Proba
Peter F. Ambros
Inge M. Ambros
Sengül Boral
Marco Lodrini
Celine Y. Chen
Martin Burkert
Dennis Guergen
Annabell Szymansky
Kathy Astrahantseff
Annette Kuenkele
Kerstin Haase
Matthias Fischer
Hedwig E. Deubzer
Falk Hertwig
Patrick Hundsdoerfer
Anton G. Henssen
Roland F. Schwarz
Johannes H. Schulte
Angelika Eggert
Spatial and temporal intratumour heterogeneity has potential consequences for single biopsy-based neuroblastoma treatment decisions
description Neuroblastoma is a devastating tumour in children. Here, the authors analyse multi-region patient samples using genomics and transcriptomics, revealing temporal and spatial heterogeneity and questioning the reliability of single-biopsy based diagnostics.
format article
author Karin Schmelz
Joern Toedling
Matt Huska
Maja C. Cwikla
Louisa-Marie Kruetzfeldt
Jutta Proba
Peter F. Ambros
Inge M. Ambros
Sengül Boral
Marco Lodrini
Celine Y. Chen
Martin Burkert
Dennis Guergen
Annabell Szymansky
Kathy Astrahantseff
Annette Kuenkele
Kerstin Haase
Matthias Fischer
Hedwig E. Deubzer
Falk Hertwig
Patrick Hundsdoerfer
Anton G. Henssen
Roland F. Schwarz
Johannes H. Schulte
Angelika Eggert
author_facet Karin Schmelz
Joern Toedling
Matt Huska
Maja C. Cwikla
Louisa-Marie Kruetzfeldt
Jutta Proba
Peter F. Ambros
Inge M. Ambros
Sengül Boral
Marco Lodrini
Celine Y. Chen
Martin Burkert
Dennis Guergen
Annabell Szymansky
Kathy Astrahantseff
Annette Kuenkele
Kerstin Haase
Matthias Fischer
Hedwig E. Deubzer
Falk Hertwig
Patrick Hundsdoerfer
Anton G. Henssen
Roland F. Schwarz
Johannes H. Schulte
Angelika Eggert
author_sort Karin Schmelz
title Spatial and temporal intratumour heterogeneity has potential consequences for single biopsy-based neuroblastoma treatment decisions
title_short Spatial and temporal intratumour heterogeneity has potential consequences for single biopsy-based neuroblastoma treatment decisions
title_full Spatial and temporal intratumour heterogeneity has potential consequences for single biopsy-based neuroblastoma treatment decisions
title_fullStr Spatial and temporal intratumour heterogeneity has potential consequences for single biopsy-based neuroblastoma treatment decisions
title_full_unstemmed Spatial and temporal intratumour heterogeneity has potential consequences for single biopsy-based neuroblastoma treatment decisions
title_sort spatial and temporal intratumour heterogeneity has potential consequences for single biopsy-based neuroblastoma treatment decisions
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/2390ab09b04a41c28245bac3ed08f2c9
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AT matthuska spatialandtemporalintratumourheterogeneityhaspotentialconsequencesforsinglebiopsybasedneuroblastomatreatmentdecisions
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