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Modeling rectal cancer to advance neoadjuvant precision therapy

  • Harinarayanan Janakiraman
  • , Yun Zhu
  • , Scott A. Becker
  • , Cindy Wang
  • , Ashley Cross
  • , Emily Curl
  • , David Lewin
  • , Brenda J. Hoffman
  • , Graham W. Warren
  • , Elizabeth G. Hill
  • , Cynthia Timmers
  • , Victoria J. Findlay
  • , Ernest R. Camp

Producción científica: Articlerevisión exhaustiva

34 Citas (Scopus)

Resumen

Progress in rectal cancer therapy has been hindered by the lack of effective disease-specific preclinical models that account for the unique molecular profile and biology of rectal cancer. Thus, we developed complementary patient-derived xenograft (PDX) and subsequent in vitro tumor organoid (PDTO) platforms established from preneoadjuvant therapy rectal cancer specimens to advance personalized care for rectal cancer patients. Multiple endoscopic samples were obtained from 26 Stages 2 and 3 rectal cancer patients prior to receiving 5FU/RT and implanted subcutaneously into NSG mice to generate 15 subcutaneous PDXs. Second passaged xenografts demonstrated 100% correlation with the corresponding human cancer histology with maintained mutational profiles. Individual rectal cancer PDXs reproduced the 5FU/RT response observed in the corresponding human cancers. Similarly, rectal cancer PDTOs reproduced significant heterogeneity in cellular morphology and architecture. PDTO in vitro 5FU/RT treatment response replicated the clinical 5FU/RT neoadjuvant therapy pathologic response observed in the corresponding patient tumors (p < 0.05). The addition of cetuximab to the 5FU/RT regiment was significantly more sensitive in the rectal cancer PDX and PDTOs with wild-type KRAS compared to mutated KRAS (p < 0.05). Considering the close relationship between the patient's cancer and the corresponding PDX/PDTO, rectal cancer patient-derived research platforms represent powerful translational research resources as population-based tools for biomarker discovery and experimental therapy testing. In addition, our findings suggest that cetuximab may enhance RT effectiveness by improved patient selection based on mutational profile in addition to KRAS or by developing a protocol using PDTOs to identify sensitive patients.

Idioma originalEnglish
Páginas (desde-hasta)1405-1418
Número de páginas14
PublicaciónInternational Journal of Cancer
Volumen147
N.º5
DOI
EstadoPublished - sept 1 2020

Nota bibliográfica

Publisher Copyright:
© 2020 UICC

Financiación

This work was supported in part by Merit Review Award # I01 CX001880‐01A1 from the United States (U.S.) Department of Veterans Affairs Biomedical Laboratory Research and Development Program (ERC), Hollings Cancer Center's Idea Award (ERC) and the Hollings Cancer Center's Cancer Center Support Grant P30 CA138313 at the Medical University of South Carolina. CT supported by NCI R50 CA211529‐04 grant. This work was supported in part by Merit Review Award # I01 CX001880-01A1 from the United States (U.S.) Department of Veterans Affairs Biomedical Laboratory Research and Development Program (ERC), Hollings Cancer Center's Idea Award (ERC) and the Hollings Cancer Center's Cancer Center Support Grant P30 CA138313 at the Medical University of South Carolina. CT supported by NCI R50 CA211529-04 grant.

FinanciadoresNúmero del financiador
U.S. Department of Veterans Affairs Office of Research and Development Biomedical Laboratory Research Program
Hollings Cancer Center’s Cancer Center
Hollings Cancer Center's Cancer CenterP30 CA138313
National Childhood Cancer Registry – National Cancer InstituteR50 CA211529‐04
U.S. Department of Veterans AffairsI01CX001880
Engineering Research Centers
H2020 European Research Council

    ODS de las Naciones Unidas

    Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

    1. Good health and well being
      Good health and well being

    ASJC Scopus subject areas

    • Oncology
    • Cancer Research

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