A Novel Breast Cancer Xenograft Model Using the Ostrich Chorioallantoic Membrane-A Proof of Concept

The avian chorioallantoic membrane (CAM) assay has attracted scientific attention in cancer research as an alternative or complementary method for in vivo animal models. Here, we present a xenograft model based on the ostrich ( CAM assay for the first time. The engraftment of 2 × 10 breast cancer ca...

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Veröffentlicht in:Veterinary sciences 2023-05, Vol.10 (5), p.349
Hauptverfasser: Pomraenke, Marta, Bolney, Robert, Winkens, Thomas, Perkas, Olga, Pretzel, David, Theis, Bernhard, Greiser, Julia, Freesmeyer, Martin
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Sprache:eng
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Zusammenfassung:The avian chorioallantoic membrane (CAM) assay has attracted scientific attention in cancer research as an alternative or complementary method for in vivo animal models. Here, we present a xenograft model based on the ostrich ( CAM assay for the first time. The engraftment of 2 × 10 breast cancer carcinoma MDA-MB-231 cells successfully lead to tumor formation. Tumor growth monitoring was evaluated in eight fertilized eggs after xenotransplantation. Cancer cells were injected directly onto the CAM surface, close to a well-vascularized area. Histological analysis confirmed the epithelial origin of tumors. The CAM of ostrich embryos provides a large experimental surface for the xenograft, while the comparably long developmental period allows for a long experimental window for tumor growth and treatment. These advantages could make the ostrich CAM assay an attractive alternative to the well-established chick embryo model. Additionally, the large size of ostrich embryos compared to mice and rats could help overcome the limitations of small animal models. The suggested ostrich model is promising for future applications, for example, in radiopharmaceutical research, the size of the embryonal organs may compensate for the loss in image resolution caused by physical limitations in small animal positron emission tomography (PET) imaging.
ISSN:2306-7381
2306-7381
DOI:10.3390/vetsci10050349