bioRxiv · 10.1101/2025.08.08.669244
Establishment of a humanized patient-derived xenograft mouse model of high-grade serous ovarian cancer for preclinical evaluation of combination immunotherapy
Abstract
The limited efficacy of immunotherapy in clinical trials in high-grade serous ovarian cancer (HGSOC) may improve by implementing models more reflective of human biology into preclinical studies. To address this, we developed and validated a humanized patient-derived xenograft mouse model of HGSOC. Human hematopoietic stem cells and patient-derived HGSOC were engrafted into immunodeficient mice. The mice were administered durvalumab and/or oleclumab intraperitoneally semi-weekly for five weeks. The immunotherapy was well-tolerated, though no responses occurred. Leukocytes in primary tumors were analyzed immunohistochemically, and circulating T cells were characterized using spectral flow cytometry. All tumors exhibited an immune-excluded immunophenotype. No significant inter-group differences in disease burden, intratumoral leukocyte density, or circulating T-cells were observed. In the durvalumab-only group, tumor burden significantly positively correlated with intratumoral cytotoxic and regulatory T-cell densities. This model reflects human disease biology and clinical findings, providing a robust platform for studying tumor-immune interactions and immunosuppressive mechanisms in HGSOC.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Tandaric, L., Bjorge, L., Rott Lode, M., Fredvik Torkildsen, C., Aehnlich, P., Elnour, R., Costea, D. E., Akslen, L. A., Vestrheim Thomsen, L. C., Mc Cormack, E., Kleinmanns, K.. 2025-08-11. Establishment of a humanized patient-derived xenograft mouse model of high-grade serous ovarian cancer for preclinical evaluation of combination immunotherapy. https://doi.org/10.1101/2025.08.08.669244
Cite the original work for its findings. Save a collection to share your selection of sources.