Although kidney cancer arises from a variety of nephron cells with diverse characteristics and develops intratumor heterogeneity, a model to elucidate these complexities is incompletely developed. In this study, we report a genetically engineered human induced pluripotent stem cell-derived kidney organoid (HKO) model, which may recapitulate an early stage of renal tumorigenesis. When we overexpressed the VCL-ALK fusion gene, a renal oncogene, in HKO, tubular cells proliferated, and this proliferation was sustained under long-term culture or hypoxic conditions. In addition, the proliferating tubular cells migrated into the renal parenchyma of host mice upon transplantation. The deconvolution analysis and IHC revealed that the proliferating tubular cells could be arrested at an immature tubular progenitor stage with increased expressions of LIM homeobox protein 1 and jagged canonical Notch ligand 1, critical regulators of nephrogenesis. Our HKO model advances our understanding of renal tumorigenesis in the context of the trajectory of nephron development.
Implications: Dysregulated nephron developmental machinery leads to aberrant cell proliferation of immature renal tubules.
©2025 American Association for Cancer Research.