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Isolation and Characterization of Tumor-initiating Cells from Sarcoma Patient-derived Xenografts
Published on: June 13, 2019
B7-H3 Specific CAR T Cells for the Naturally Occurring, Spontaneous Canine Sarcoma Model
Shihong Zhang1, R Graeme Black1, Karan Kohli1
1Clinical Research Division, Fred Hutchinson Cancer Research Center, Seattle, Washington.
Abstract:
One obstacle for human solid tumor immunotherapy research is the lack of clinically relevant animal models. In this study, we sought to establish a chimeric antigen receptor (CAR) T-cell treatment model for naturally occurring canine sarcomas as a model for human CAR T-cell therapy. Canine CARs specific for B7-H3 were constructed using a single-chain variable fragment derived from the human B7-H3-specific antibody MGA271, which we confirmed to be cross-reactive with canine B7-H3. After refining activation, transduction, and expansion methods, we confirmed target killing in a tumor spheroid three-dimensional assay. We designed a B7-H3 canine CAR T-cell and achieved consistently high levels of transduction efficacy, expansion, and in vitro tumor killing. Safety of the CAR T cells were confirmed in two purposely bred healthy canine subjects following lymphodepletion by cyclophosphamide and fludarabine. Immune response, clinical parameters, and manifestation were closely monitored after treatments and were shown to resemble that of humans. No severe adverse events were observed. In summary, we demonstrated that similar to human cancers, B7-H3 can serve as a target for canine solid tumors. We successfully generated highly functional canine B7-H3-specific CAR T-cell products using a production protocol that closely models human CAR T-cell production procedure. The treatment regimen that we designed was confirmed to be safe in vivo. Our research provides a promising direction to establish in vitro and in vivo models for immunotherapy for canine and human solid tumor treatment.
Insights
Researchers developed a canine chimeric antigen receptor (CAR) T-cell model targeting B7-H3 for solid tumors. This preclinical model closely mimics human CAR T-cell therapy, showing safety and efficacy in canine subjects.
Area of Science:
- Immunology
- Oncology
- Veterinary Medicine
- Biotechnology
Background:
- Clinically relevant animal models are crucial for advancing human solid tumor immunotherapy research.
- Existing models often lack the necessary translational relevance for effective CAR T-cell therapy development.
Purpose of the Study:
- To establish a chimeric antigen receptor (CAR) T-cell treatment model using naturally occurring canine sarcomas.
- To evaluate the efficacy and safety of canine CAR T-cells targeting B7-H3 as a model for human therapy.
Main Methods:
- Constructed canine CARs targeting B7-H3 using a human-derived single-chain variable fragment (MGA271).
- Optimized CAR T-cell activation, transduction, and expansion methods.
- Assessed in vitro tumor killing using a 3D tumor spheroid assay and confirmed in vivo safety in healthy canines.
Main Results:
- Achieved high transduction efficacy, expansion, and in vitro tumor cell killing with canine B7-H3 CAR T-cells.
- Demonstrated that B7-H3 is a viable target for canine solid tumors, similar to human cancers.
- Confirmed the safety of the CAR T-cell treatment regimen in vivo, with no severe adverse events observed.
Conclusions:
- Successfully generated functional canine B7-H3-specific CAR T-cell products using a human-like production protocol.
- The developed canine model provides a safe and effective platform for preclinical evaluation of CAR T-cell therapies.
- This research offers a promising direction for establishing in vitro and in vivo models for both canine and human solid tumor immunotherapy.

