Bone-in-culture array as a platform to model early-stage bone metastases and discover anti-metastasis therapies

The bone microenvironment may alter therapeutic responses of disseminated breast cancer cells. Here the authors establish anex vivobone metastasis model, termed BICA, to delineate the effects of bone microenvironment and to rapidly discover anti-metastasis drugs.

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Autores principales: Hai Wang, Lin Tian, Amit Goldstein, Jun Liu, Hin-Ching Lo, Kuanwei Sheng, Thomas Welte, Stephen T.C. Wong, Zbigniew Gugala, Fabio Stossi, Chenghang Zong, Zonghai Li, Michael A. Mancini, Xiang H.-F. Zhang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/277b6262d22942908dfbeb83711138c3
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spelling oai:doaj.org-article:277b6262d22942908dfbeb83711138c32021-12-02T14:42:08ZBone-in-culture array as a platform to model early-stage bone metastases and discover anti-metastasis therapies10.1038/ncomms150452041-1723https://doaj.org/article/277b6262d22942908dfbeb83711138c32017-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms15045https://doaj.org/toc/2041-1723The bone microenvironment may alter therapeutic responses of disseminated breast cancer cells. Here the authors establish anex vivobone metastasis model, termed BICA, to delineate the effects of bone microenvironment and to rapidly discover anti-metastasis drugs.Hai WangLin TianAmit GoldsteinJun LiuHin-Ching LoKuanwei ShengThomas WelteStephen T.C. WongZbigniew GugalaFabio StossiChenghang ZongZonghai LiMichael A. ManciniXiang H.-F. ZhangNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-13 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Hai Wang
Lin Tian
Amit Goldstein
Jun Liu
Hin-Ching Lo
Kuanwei Sheng
Thomas Welte
Stephen T.C. Wong
Zbigniew Gugala
Fabio Stossi
Chenghang Zong
Zonghai Li
Michael A. Mancini
Xiang H.-F. Zhang
Bone-in-culture array as a platform to model early-stage bone metastases and discover anti-metastasis therapies
description The bone microenvironment may alter therapeutic responses of disseminated breast cancer cells. Here the authors establish anex vivobone metastasis model, termed BICA, to delineate the effects of bone microenvironment and to rapidly discover anti-metastasis drugs.
format article
author Hai Wang
Lin Tian
Amit Goldstein
Jun Liu
Hin-Ching Lo
Kuanwei Sheng
Thomas Welte
Stephen T.C. Wong
Zbigniew Gugala
Fabio Stossi
Chenghang Zong
Zonghai Li
Michael A. Mancini
Xiang H.-F. Zhang
author_facet Hai Wang
Lin Tian
Amit Goldstein
Jun Liu
Hin-Ching Lo
Kuanwei Sheng
Thomas Welte
Stephen T.C. Wong
Zbigniew Gugala
Fabio Stossi
Chenghang Zong
Zonghai Li
Michael A. Mancini
Xiang H.-F. Zhang
author_sort Hai Wang
title Bone-in-culture array as a platform to model early-stage bone metastases and discover anti-metastasis therapies
title_short Bone-in-culture array as a platform to model early-stage bone metastases and discover anti-metastasis therapies
title_full Bone-in-culture array as a platform to model early-stage bone metastases and discover anti-metastasis therapies
title_fullStr Bone-in-culture array as a platform to model early-stage bone metastases and discover anti-metastasis therapies
title_full_unstemmed Bone-in-culture array as a platform to model early-stage bone metastases and discover anti-metastasis therapies
title_sort bone-in-culture array as a platform to model early-stage bone metastases and discover anti-metastasis therapies
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/277b6262d22942908dfbeb83711138c3
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