Spatial genomic heterogeneity in multiple myeloma revealed by multi-region sequencing

In multiple myeloma, malignant cells expand within bone marrow. Here, the authors use multi-region sequencing in patient samples to analyse spatial clonal architecture and heterogeneity, providing novel insight into multiple myeloma progression and evolution.

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Autores principales: L. Rasche, S. S. Chavan, O. W. Stephens, P. H. Patel, R. Tytarenko, C. Ashby, M. Bauer, C. Stein, S. Deshpande, C. Wardell, T. Buzder, G. Molnar, M. Zangari, F. van Rhee, S. Thanendrarajan, C. Schinke, J. Epstein, F. E. Davies, B. A. Walker, T. Meissner, B. Barlogie, G. J. Morgan, N. Weinhold
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/606531925289417ab3689547176c20ed
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spelling oai:doaj.org-article:606531925289417ab3689547176c20ed2021-12-02T10:48:28ZSpatial genomic heterogeneity in multiple myeloma revealed by multi-region sequencing10.1038/s41467-017-00296-y2041-1723https://doaj.org/article/606531925289417ab3689547176c20ed2017-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-00296-yhttps://doaj.org/toc/2041-1723In multiple myeloma, malignant cells expand within bone marrow. Here, the authors use multi-region sequencing in patient samples to analyse spatial clonal architecture and heterogeneity, providing novel insight into multiple myeloma progression and evolution.L. RascheS. S. ChavanO. W. StephensP. H. PatelR. TytarenkoC. AshbyM. BauerC. SteinS. DeshpandeC. WardellT. BuzderG. MolnarM. ZangariF. van RheeS. ThanendrarajanC. SchinkeJ. EpsteinF. E. DaviesB. A. WalkerT. MeissnerB. BarlogieG. J. MorganN. WeinholdNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-11 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
L. Rasche
S. S. Chavan
O. W. Stephens
P. H. Patel
R. Tytarenko
C. Ashby
M. Bauer
C. Stein
S. Deshpande
C. Wardell
T. Buzder
G. Molnar
M. Zangari
F. van Rhee
S. Thanendrarajan
C. Schinke
J. Epstein
F. E. Davies
B. A. Walker
T. Meissner
B. Barlogie
G. J. Morgan
N. Weinhold
Spatial genomic heterogeneity in multiple myeloma revealed by multi-region sequencing
description In multiple myeloma, malignant cells expand within bone marrow. Here, the authors use multi-region sequencing in patient samples to analyse spatial clonal architecture and heterogeneity, providing novel insight into multiple myeloma progression and evolution.
format article
author L. Rasche
S. S. Chavan
O. W. Stephens
P. H. Patel
R. Tytarenko
C. Ashby
M. Bauer
C. Stein
S. Deshpande
C. Wardell
T. Buzder
G. Molnar
M. Zangari
F. van Rhee
S. Thanendrarajan
C. Schinke
J. Epstein
F. E. Davies
B. A. Walker
T. Meissner
B. Barlogie
G. J. Morgan
N. Weinhold
author_facet L. Rasche
S. S. Chavan
O. W. Stephens
P. H. Patel
R. Tytarenko
C. Ashby
M. Bauer
C. Stein
S. Deshpande
C. Wardell
T. Buzder
G. Molnar
M. Zangari
F. van Rhee
S. Thanendrarajan
C. Schinke
J. Epstein
F. E. Davies
B. A. Walker
T. Meissner
B. Barlogie
G. J. Morgan
N. Weinhold
author_sort L. Rasche
title Spatial genomic heterogeneity in multiple myeloma revealed by multi-region sequencing
title_short Spatial genomic heterogeneity in multiple myeloma revealed by multi-region sequencing
title_full Spatial genomic heterogeneity in multiple myeloma revealed by multi-region sequencing
title_fullStr Spatial genomic heterogeneity in multiple myeloma revealed by multi-region sequencing
title_full_unstemmed Spatial genomic heterogeneity in multiple myeloma revealed by multi-region sequencing
title_sort spatial genomic heterogeneity in multiple myeloma revealed by multi-region sequencing
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/606531925289417ab3689547176c20ed
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