Modeling biological and genetic diversity in upper tract urothelial carcinoma with patient derived xenografts

The advancement of upper tract urothelial carcinoma (UTUC) research is hampered by the lack of disease-specific models. Here, the authors report patient derived xenograft and cell line models of UTUC, and show that these models retain the genomic and biological heterogeneity of human disease.

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Autores principales: Kwanghee Kim, Wenhuo Hu, François Audenet, Nima Almassi, Aphrothiti J. Hanrahan, Katie Murray, Aditya Bagrodia, Nathan Wong, Timothy N. Clinton, Shawn Dason, Vishnu Mohan, Sylvia Jebiwott, Karan Nagar, Jianjiong Gao, Alex Penson, Chris Hughes, Benjamin Gordon, Ziyu Chen, Yiyu Dong, Philip A. Watson, Ricardo Alvim, Arijh Elzein, Sizhi P. Gao, Emiliano Cocco, Alessandro D. Santin, Irina Ostrovnaya, James J. Hsieh, Irit Sagi, Eugene J. Pietzak, A. Ari Hakimi, Jonathan E. Rosenberg, Gopa Iyer, Herbert A. Vargas, Maurizio Scaltriti, Hikmat Al-Ahmadie, David B. Solit, Jonathan A. Coleman
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/21deaeb5b9144f9aa0be74b0bca108b3
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spelling oai:doaj.org-article:21deaeb5b9144f9aa0be74b0bca108b32021-12-02T17:32:42ZModeling biological and genetic diversity in upper tract urothelial carcinoma with patient derived xenografts10.1038/s41467-020-15885-72041-1723https://doaj.org/article/21deaeb5b9144f9aa0be74b0bca108b32020-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-15885-7https://doaj.org/toc/2041-1723The advancement of upper tract urothelial carcinoma (UTUC) research is hampered by the lack of disease-specific models. Here, the authors report patient derived xenograft and cell line models of UTUC, and show that these models retain the genomic and biological heterogeneity of human disease.Kwanghee KimWenhuo HuFrançois AudenetNima AlmassiAphrothiti J. HanrahanKatie MurrayAditya BagrodiaNathan WongTimothy N. ClintonShawn DasonVishnu MohanSylvia JebiwottKaran NagarJianjiong GaoAlex PensonChris HughesBenjamin GordonZiyu ChenYiyu DongPhilip A. WatsonRicardo AlvimArijh ElzeinSizhi P. GaoEmiliano CoccoAlessandro D. SantinIrina OstrovnayaJames J. HsiehIrit SagiEugene J. PietzakA. Ari HakimiJonathan E. RosenbergGopa IyerHerbert A. VargasMaurizio ScaltritiHikmat Al-AhmadieDavid B. SolitJonathan A. ColemanNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kwanghee Kim
Wenhuo Hu
François Audenet
Nima Almassi
Aphrothiti J. Hanrahan
Katie Murray
Aditya Bagrodia
Nathan Wong
Timothy N. Clinton
Shawn Dason
Vishnu Mohan
Sylvia Jebiwott
Karan Nagar
Jianjiong Gao
Alex Penson
Chris Hughes
Benjamin Gordon
Ziyu Chen
Yiyu Dong
Philip A. Watson
Ricardo Alvim
Arijh Elzein
Sizhi P. Gao
Emiliano Cocco
Alessandro D. Santin
Irina Ostrovnaya
James J. Hsieh
Irit Sagi
Eugene J. Pietzak
A. Ari Hakimi
Jonathan E. Rosenberg
Gopa Iyer
Herbert A. Vargas
Maurizio Scaltriti
Hikmat Al-Ahmadie
David B. Solit
Jonathan A. Coleman
Modeling biological and genetic diversity in upper tract urothelial carcinoma with patient derived xenografts
description The advancement of upper tract urothelial carcinoma (UTUC) research is hampered by the lack of disease-specific models. Here, the authors report patient derived xenograft and cell line models of UTUC, and show that these models retain the genomic and biological heterogeneity of human disease.
format article
author Kwanghee Kim
Wenhuo Hu
François Audenet
Nima Almassi
Aphrothiti J. Hanrahan
Katie Murray
Aditya Bagrodia
Nathan Wong
Timothy N. Clinton
Shawn Dason
Vishnu Mohan
Sylvia Jebiwott
Karan Nagar
Jianjiong Gao
Alex Penson
Chris Hughes
Benjamin Gordon
Ziyu Chen
Yiyu Dong
Philip A. Watson
Ricardo Alvim
Arijh Elzein
Sizhi P. Gao
Emiliano Cocco
Alessandro D. Santin
Irina Ostrovnaya
James J. Hsieh
Irit Sagi
Eugene J. Pietzak
A. Ari Hakimi
Jonathan E. Rosenberg
Gopa Iyer
Herbert A. Vargas
Maurizio Scaltriti
Hikmat Al-Ahmadie
David B. Solit
Jonathan A. Coleman
author_facet Kwanghee Kim
Wenhuo Hu
François Audenet
Nima Almassi
Aphrothiti J. Hanrahan
Katie Murray
Aditya Bagrodia
Nathan Wong
Timothy N. Clinton
Shawn Dason
Vishnu Mohan
Sylvia Jebiwott
Karan Nagar
Jianjiong Gao
Alex Penson
Chris Hughes
Benjamin Gordon
Ziyu Chen
Yiyu Dong
Philip A. Watson
Ricardo Alvim
Arijh Elzein
Sizhi P. Gao
Emiliano Cocco
Alessandro D. Santin
Irina Ostrovnaya
James J. Hsieh
Irit Sagi
Eugene J. Pietzak
A. Ari Hakimi
Jonathan E. Rosenberg
Gopa Iyer
Herbert A. Vargas
Maurizio Scaltriti
Hikmat Al-Ahmadie
David B. Solit
Jonathan A. Coleman
author_sort Kwanghee Kim
title Modeling biological and genetic diversity in upper tract urothelial carcinoma with patient derived xenografts
title_short Modeling biological and genetic diversity in upper tract urothelial carcinoma with patient derived xenografts
title_full Modeling biological and genetic diversity in upper tract urothelial carcinoma with patient derived xenografts
title_fullStr Modeling biological and genetic diversity in upper tract urothelial carcinoma with patient derived xenografts
title_full_unstemmed Modeling biological and genetic diversity in upper tract urothelial carcinoma with patient derived xenografts
title_sort modeling biological and genetic diversity in upper tract urothelial carcinoma with patient derived xenografts
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/21deaeb5b9144f9aa0be74b0bca108b3
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