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Establishment and characterization of a non-gestational choriocarcinoma patient-derived xenograft model
Yukari Oda1, Kaoru Niimi2, Kosuke Yoshida1
1Department of Obstetrics and Gynaecology, Nagoya University Graduate School of Medicine, Tsuruma- cho 65, Showa-ku, Nagoya, 466-8550, Japan.
Background:
Non-gestational choriocarcinoma (NGC) is a rare subtype of malignant germ cell tumour and there is no consensus on its treatment. The lack of suitable preclinical models for NGC is a challenge in drug discovery research. Patient-derived xenograft (PDX) models recapitulate the tumour microenvironment of the original cancer tissue. Therefore, they have received considerable attention for studies on rare cancer. Here, we aimed to establish a PDX model from a patient with recurrent NGC.
Methods:
Fresh NGC tumour tissue was immediately transplanted into a severely immune-deficient mouse (NOD.Cg-Prkdcscid1l2rgtm1Wjl/SzJ) and maintained for more than three in vivo passages. Subsequently, we evaluated the molecular characteristics of the PDX model using immunohistochemistry, polymerase chain reaction, and RNA sequencing. Moreover, the PDX tumours were transplanted into BALB/c nude mice, and we evaluated their sensitivity for cisplatin and methotrexate.
Results:
The PDX tumour maintained the morphological features of NGC. Moreover, Immunohistochemistry revealed that the human chorionic gonadotropin, cytokeratin 7, and EpCAM expression levels were similar to those in the primary tumour. Furthermore, serum human chorionic gonadotropin levels were elevated in both the primary tumour and the PDX models. Additionally, using PCR analysis with species-specific primers, we confirmed that the PDX tumour contained human genes and was derived from human tissue. Moreover, the gene expression profile of the NGC was compared with that of epithelial ovarian cancer samples and cell lines, and 568 dysregulated genes in the NGC were extracted. The expression of the dysregulated genes in PDX was significantly correlated with that in the primary tumour (R2 = 0.873, P < 0.001). Finally, we demonstrated that the PDX tumour was sensitive to cisplatin and methotrexate; therefore, its clinical response to the agents was similar to that of the primary tumour.
Conclusions:
We successfully established a PDX model of NGC, to the best of our knowledge, for the first time. The established PDX retained the molecular and transcriptome characteristics of the primary tumour and can be used to predict drug effects. It may facilitate further research and the development of novel therapeutic agents for NGC.
Insights
We developed the first patient-derived xenograft (PDX) model for non-gestational choriocarcinoma (NGC). This model accurately reflects the original tumor
Area of Science:
- Oncology
- Translational Research
- Cancer Models
Background:
- Non-gestational choriocarcinoma (NGC) is a rare malignant germ cell tumor with no established treatment consensus.
- Developing preclinical models for NGC is crucial for drug discovery but remains challenging.
- Patient-derived xenograft (PDX) models offer a promising approach to study rare cancers by preserving the tumor microenvironment.
Purpose of the Study:
- To establish and characterize a novel patient-derived xenograft (PDX) model from a patient with recurrent non-gestational choriocarcinoma (NGC).
- To evaluate the molecular fidelity and drug sensitivity of the established NGC PDX model.
Main Methods:
- Transplanted fresh NGC tumor tissue into immunodeficient mice for in vivo passage.
- Assessed molecular characteristics using immunohistochemistry, PCR, and RNA sequencing.
- Evaluated PDX tumor sensitivity to cisplatin and methotrexate in vivo.
Main Results:
- The PDX model successfully retained the morphological and molecular features of the primary NGC, including key marker expression (human chorionic gonadotropin, cytokeratin 7, EpCAM).
- Gene expression profiling showed a strong correlation (R² = 0.873) between the PDX model and the primary tumor.
- The PDX model demonstrated sensitivity to cisplatin and methotrexate, mirroring the primary tumor's clinical response.
Conclusions:
- Successfully established the first patient-derived xenograft (PDX) model for non-gestational choriocarcinoma (NGC).
- The PDX model accurately recapitulates the molecular and transcriptome characteristics of the primary tumor.
- This novel NGC PDX model can predict drug efficacy and facilitate research for new therapeutic agents.
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