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Updated: Aug 20, 2025

Development and Maintenance of a Preclinical Patient Derived Tumor Xenograft Model for the Investigation of Novel Anti-Cancer Therapies
Published on: September 30, 2016
Cabozantinib sensitizes microsatellite stable colorectal cancer to immune checkpoint blockade by immune modulation in
Julie Lang1, Alexis D Leal2, Juan A Marín-Jiménez3
1Department of Immunology and Microbiology, University of Colorado Anschutz Medical Campus, Aurora, CO, United States.
Abstract:
Immune checkpoint inhibitors have been found to be effective in metastatic MSI-high colorectal cancers (CRC), however, have no efficacy in microsatellite stable (MSS) cancers, which comprise the majority of mCRC cases. Cabozantinib is a small molecule multi-tyrosine kinase inhibitor that is FDA approved in advanced renal cell, medullary thyroid, and hepatocellular carcinoma. Using Human Immune System (HIS) mice, we tested the ability of cabozantinib to prime MSS-CRC tumors to enhance the potency of immune checkpoint inhibitor nivolumab. In four independent experiments, we implanted distinct MSS-CRC patient-derived xenografts (PDXs) into the flanks of humanized BALB/c-Rag2nullIl2rγnullSirpαNOD (BRGS) mice that had been engrafted with human hematopoietic stem cells at birth. For each PDX, HIS-mice cohorts were treated with vehicle, nivolumab, cabozantinib, or the combination. In three out of the four models, the combination had a lower tumor growth rate compared to vehicle or nivolumab-treated groups. Furthermore, interrogation of the HIS in immune organs and tumors by flow cytometry revealed increased Granzyme B+, TNFα+ and IFNγ+ CD4+ T cells among the human tumor infiltrating leukocytes (TIL) that correlated with reduced tumor growth in the combination-treated HIS-mice. Notably, slower growth correlated with increased expression of the CD4+ T cell ligand, HLA-DR, on the tumor cells themselves. Finally, the cabozantinib/nivolumab combination was tested in comparison to cobimetinib/atezolizumab. Although both combinations showed tumor growth inhibition, cabozantinib/nivolumab had enhanced cytotoxic IFNγ and TNFα+ T cells. This pre-clinical in vivo data warrants testing the combination in clinical trials for patients with MSS-CRC.
Insights
Cabozantinib may prime microsatellite stable colorectal cancer (MSS-CRC) tumors for immune checkpoint inhibitor nivolumab. This combination showed reduced tumor growth and increased cytotoxic T cells in preclinical models, suggesting potential for clinical trials in MSS-CRC patients.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Immune checkpoint inhibitors (ICIs) are effective in MSI-high colorectal cancer (CRC) but not MSS-CRC.
- MSS-CRC constitutes the majority of metastatic CRC (mCRC) cases, highlighting an unmet need.
- Cabozantinib is a multi-tyrosine kinase inhibitor approved for other advanced cancers.
Purpose of the Study:
- To evaluate if cabozantinib can sensitize MSS-CRC tumors to nivolumab in a preclinical model.
- To assess the impact of cabozantinib and nivolumab combination on tumor growth and immune cell infiltration.
Main Methods:
- Utilized Human Immune System (HIS) mice engrafted with human hematopoietic stem cells.
- Implanted MSS-CRC patient-derived xenografts (PDXs) into HIS mice.
- Treated HIS mice with vehicle, nivolumab, cabozantinib, or the combination, analyzing tumor growth and immune cell populations via flow cytometry.
Main Results:
- The cabozantinib/nivolumab combination demonstrated reduced tumor growth rates in three out of four MSS-CRC PDX models.
- Combination therapy increased Granzyme B+, TNFα+, and IFNγ+ CD4+ T cells within tumors.
- Slower tumor growth correlated with increased HLA-DR expression on tumor cells.
Conclusions:
- Cabozantinib can potentially prime MSS-CRC tumors to enhance the efficacy of nivolumab.
- The combination therapy promotes an anti-tumor immune response characterized by cytotoxic T cells.
- These preclinical findings support the investigation of cabozantinib/nivolumab in clinical trials for MSS-CRC patients.
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