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Nature·4 min read·hard

A tumour-derived organoid biobank maps cancer gene dependencies

H
Herranz-Ors, C.
A tumour-derived organoid biobank maps cancer gene dependencies
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Researchers have developed a biobank of 256 clinically annotated tumour organoids to serve as a more accurate model for cancer research than traditional cell lines. This resource maps gene dependencies across various cancer types, providing a tool for precision oncology and drug discovery.

Why it matters

This biobank addresses the limitations of traditional cancer cell lines, potentially accelerating the development of personalized cancer treatments by providing more representative models of human tumour diversity.

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Cancer cell lines remain foundational for research and drug discovery, yet they incompletely capture tumour diversity, lack linked patient context, and have undergone adaptation to culture. Tumour organoids are three-dimensional cultures derived from patient tissue that offer a powerful complement to cell lines 1 . Here we derived and characterized 256 clinically annotated tumour organoids directly from colorectal, oesophageal, ovarian, pancreatic and gastric cancers as renewable, genetically stable models. Extensive characterization of each model and matched patient tumour samples included whole-genome and transcriptome sequencing, and genome-wide CRISPR–Cas9 screens across 162 organoids mapped gene dependencies. Integrative analyses revealed genomic and clinical markers of dependency across common and rare subtypes, identified organoid-specific essential genes, and revealed targetable vulnerabilities following tumour evolution in paired pre- and post-treatment samples. In colorectal cancer, functional and pharmacological interrogation of the EGFR–RAS–MAPK axis uncovered differential effects of KRAS variant alleles.

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