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Updated: Jul 23, 2025

Author Spotlight: Recreating Melanoma Complexity with Patient-Derived Organoids for Immunotherapy Evaluation
Published on: September 6, 2024
A Novel Humanized Immune Stroma PDX Cancer Model for Therapeutic Studies
Abstract:
Standard preclinical human tumor models lack a human tumor stroma. However, as stroma contributes to therapeutic resistance, the lack of human stroma may make current models less stringent for testing new therapies. To address this, using patient-derived tumor cells, patient derived cancer-associated mesenchymal stem/progenitor cells, and human endothelial cells, we created a Human Stroma-Patient Derived Xenograft (HS-PDX) tumor model. HS-PDX, compared to the standard PDX model, demonstrate greater resistance to targeted therapy and chemotherapy, and better reflect patient response to therapy. Furthermore, HS-PDX can be grown in mice with humanized bone marrow to create humanized immune stroma patient-derived xenograft (HIS-PDX) models. The HIS-PDX model contains human connective tissues, vascular and immune cell infiltrates. RNA sequencing analysis demonstrated a 94-96% correlation with primary human tumor. Using this model, we demonstrate the impact of human tumor stroma on response to CAR-T cell therapy and immune checkpoint inhibitor therapy. We show an immunosuppressive role for human tumor stroma and that this model can be used to identify immunotherapeutic combinations to overcome stromally mediated immunosuppression. Combined, our data confirm a critical role for human stoma in therapeutic response and indicate that HIS-PDX can be an important tool for preclinical drug testing.
Statement Of Significance:
We developed a tumor model with human stromal, vascular, and immune cells. This model mirrors patient response to chemotherapy, targeted therapy, and immunotherapy, and can be used to study therapy resistance.
Insights
A novel human stroma-patient derived xenograft (HS-PDX) model incorporates human stromal, vascular, and immune cells. This advanced model better predicts patient response to cancer therapies, including immunotherapies.
Area of Science:
- Oncology
- Translational Medicine
- Xenograft Models
Background:
- Standard preclinical tumor models often lack human tumor stroma, a key component contributing to therapeutic resistance.
- This deficiency may limit the stringency of current models for evaluating novel cancer therapies.
Conclusions:
- Human tumor stroma critically influences therapeutic response.
- The HIS-PDX model is a valuable tool for preclinical drug testing and identifying immunotherapeutic combinations to overcome stromally mediated immunosuppression.

