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

Author

Listed:
  • Kwanghee Kim

    (Memorial Sloan Kettering Cancer Center)

  • Wenhuo Hu

    (Memorial Sloan Kettering Cancer Center)

  • François Audenet

    (Memorial Sloan Kettering Cancer Center)

  • Nima Almassi

    (Memorial Sloan Kettering Cancer Center)

  • Aphrothiti J. Hanrahan

    (Memorial Sloan Kettering Cancer Center)

  • Katie Murray

    (Memorial Sloan Kettering Cancer Center)

  • Aditya Bagrodia

    (Memorial Sloan Kettering Cancer Center)

  • Nathan Wong

    (Memorial Sloan Kettering Cancer Center)

  • Timothy N. Clinton

    (Memorial Sloan Kettering Cancer Center)

  • Shawn Dason

    (Memorial Sloan Kettering Cancer Center)

  • Vishnu Mohan

    (Weizmann Institute of Science)

  • Sylvia Jebiwott

    (Memorial Sloan Kettering Cancer Center)

  • Karan Nagar

    (Memorial Sloan Kettering Cancer Center)

  • Jianjiong Gao

    (Memorial Sloan Kettering Cancer Center)

  • Alex Penson

    (Memorial Sloan Kettering Cancer Center)

  • Chris Hughes

    (Memorial Sloan Kettering Cancer Center)

  • Benjamin Gordon

    (Memorial Sloan Kettering Cancer Center)

  • Ziyu Chen

    (Memorial Sloan Kettering Cancer Center)

  • Yiyu Dong

    (Memorial Sloan Kettering Cancer Center)

  • Philip A. Watson

    (Memorial Sloan Kettering Cancer Center)

  • Ricardo Alvim

    (Memorial Sloan Kettering Cancer Center)

  • Arijh Elzein

    (Memorial Sloan Kettering Cancer Center)

  • Sizhi P. Gao

    (Memorial Sloan Kettering Cancer Center)

  • Emiliano Cocco

    (Memorial Sloan Kettering Cancer Center)

  • Alessandro D. Santin

    (Yale University School of Medicine)

  • Irina Ostrovnaya

    (Memorial Sloan Kettering Cancer Center)

  • James J. Hsieh

    (Washington University)

  • Irit Sagi

    (Weizmann Institute of Science)

  • Eugene J. Pietzak

    (Memorial Sloan Kettering Cancer Center)

  • A. Ari Hakimi

    (Memorial Sloan Kettering Cancer Center)

  • Jonathan E. Rosenberg

    (Memorial Sloan Kettering Cancer Center)

  • Gopa Iyer

    (Memorial Sloan Kettering Cancer Center)

  • Herbert A. Vargas

    (Memorial Sloan Kettering Cancer Center)

  • Maurizio Scaltriti

    (Memorial Sloan Kettering Cancer Center)

  • Hikmat Al-Ahmadie

    (Memorial Sloan Kettering Cancer Center)

  • David B. Solit

    (Memorial Sloan Kettering Cancer Center
    Memorial Sloan Kettering Cancer Center
    Memorial Sloan Kettering Cancer Center)

  • Jonathan A. Coleman

    (Memorial Sloan Kettering Cancer Center)

Abstract

Treatment paradigms for patients with upper tract urothelial carcinoma (UTUC) are typically extrapolated from studies of bladder cancer despite their distinct clinical and molecular characteristics. The advancement of UTUC research is hampered by the lack of disease-specific models. Here, we report the establishment of patient derived xenograft (PDX) and cell line models that reflect the genomic and biological heterogeneity of the human disease. Models demonstrate high genomic concordance with the corresponding patient tumors, with invasive tumors more likely to successfully engraft. Treatment of PDX models with chemotherapy recapitulates responses observed in patients. Analysis of a HER2 S310F-mutant PDX suggests that an antibody drug conjugate targeting HER2 would have superior efficacy versus selective HER2 kinase inhibitors. In sum, the biological and phenotypic concordance between patient and PDXs suggest that these models could facilitate studies of intrinsic and acquired resistance and the development of personalized medicine strategies for UTUC patients.

Suggested Citation

  • 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 &, 2020. "Modeling biological and genetic diversity in upper tract urothelial carcinoma with patient derived xenografts," Nature Communications, Nature, vol. 11(1), pages 1-12, December.
  • Handle: RePEc:nat:natcom:v:11:y:2020:i:1:d:10.1038_s41467-020-15885-7
    DOI: 10.1038/s41467-020-15885-7
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