4.8 Article

Human primary liver cancer-derived organoid cultures for disease modeling and drug screening

Journal

NATURE MEDICINE
Volume 23, Issue 12, Pages 1424-+

Publisher

NATURE RESEARCH
DOI: 10.1038/nm.4438

Keywords

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Funding

  1. Wellcome Trust [104151/Z/14/Z, 102696]
  2. Royal Society [104151/Z/14/Z]
  3. EMBO Postdoctoral Fellowship (EMBO) [ALTF 794-2014]
  4. Marie-Curie Postdoctoral Fellowship [656193_H2020-MSCA-IF-2014]
  5. Marie Curie Initial Training Network (Marie Curie ITN WntsApp) [608180]
  6. H2020 LSMF4LIFE grant [ECH2020-668350]
  7. NC3Rs International prize
  8. Beit Prize
  9. Cambridge Cancer Center-pump priming award [CRUK-RG83267]
  10. NC3Rs project grant [NC/R001162/1]
  11. research program InnoSysTox [114027003]
  12. Netherlands Organisation for Health Research and Development (ZonMw)
  13. Dutch Digestive Foundation (MLDS-Diagnostics) [D16-26]
  14. Stand Up To Cancer [SU2C-AACRDT1213]
  15. Cancer Research UK [C44943/A22536]
  16. Wellcome Trust [104151/Z/14/Z] Funding Source: Wellcome Trust
  17. Cancer Research UK [22536] Funding Source: researchfish
  18. National Centre for the Replacement, Refinement and Reduction of Animals in Research (NC3Rs) [NC/R001162/1] Funding Source: researchfish
  19. Wellcome Trust [104151/Z/14/Z] Funding Source: researchfish

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Human liver cancer research currently lacks in vitro models that can faithfully recapitulate the pathophysiology of the original tumor. We recently described a novel, near-physiological organoid culture system, wherein primary human healthy liver cells form long-term expanding organoids that retain liver tissue function and genetic stability. Here we extend this culture system to the propagation of primary liver cancer (PLC) organoids from three of the most common PLC subtypes: hepatocellular carcinoma (HCC), cholangiocarcinoma (CC) and combined HCC/CC (CHC) tumors. PLC-derived organoid cultures preserve the histological architecture, gene expression and genomic landscape of the original tumor, allowing for discrimination between different tumor tissues and subtypes, even after long-term expansion in culture in the same medium conditions. Xenograft studies demonstrate that the tumorogenic potential, histological features and metastatic properties of PLC-derived organoids are preserved in vivo. PLC-derived organoids are amenable for biomarker identification and drug-screening testing and led to the identification of the ERK inhibitor SCH772984 as a potential therapeutic agent for primary liver cancer. We thus demonstrate the wide-ranging biomedical utilities of PLC-derived organoid models in furthering the understanding of liver cancer biology and in developing personalized-medicine approaches for the disease.

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