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αvβ3 CAR-T Cells Simultaneously Targeting Tumor and Metastases Produce Highly Effective Control in Preclinical Models
Dustin A Cobb1, Philip Mollica1, Lixia Liu1
1Division of Pediatric Hematology and Oncology, Department of Pediatrics, University of Virginia, Charlottesville, Virginia.
Abstract:
One of the many barriers to successful chimeric antigen receptor (CAR) T-cell immunotherapy against solid tumors is the scarcity of targetable molecules common to multiple types of cancer. The purpose of this study was to determine the efficacy of αvβ3 CAR-T cells against solid tumors, particularly melanoma and triple-negative breast cancer, two malignancies recognized for dependence on the αvβ3 pathway for tumor progression and metastases. A novel αvβ3 CAR-T cell developed in our lab and demonstrated to be effective and safe in preclinical models of glioblastoma and pediatric diffuse intrinsic pontine glioma was utilized in this study. Two versions of the αvβ3 CAR-T construct, containing either a CD28 or 4-1BB co-stimulation domain, were tested here. Multiple xenograft studies consisting of melanoma and orthotopic breast tumor models were conducted to evaluate the efficacy of systemically administered αvβ3 CAR-T cells. In this study, we demonstrate that the integrin αvβ3 is a highly attractive target for CAR-T cells as we found it to be highly expressed on various cancer types, including melanoma and triple-negative breast cancer, and susceptible to CAR-T cell-mediated control in multiple xenograft models. In vivo antitumor efficacy of αvβ3 CAR-T cells was underscored by the ability of CARs to circumvent tumor metastasis and to persist long term. Surprisingly, co-stimulation provided by CD28, rather than 4-1BB, led to more robust antitumor efficacy typified by superior long-term control, better persistence, and improved durability against continuous antigen exposure. These results strengthen the rationale for clinical translation and deployment of αvβ3 CAR-T cells against multiple cancer types.
Insights
Chimeric antigen receptor (CAR) T-cells targeting alpha-v-beta-3 (αvβ3) show promise against solid tumors like melanoma and breast cancer. CD28 co-stimulation enhanced CAR T-cell efficacy, persistence, and durability in preclinical models.
Area of Science:
- Immunotherapy
- Oncology
- Cellular Therapy
Background:
- Solid tumors present a challenge for CAR T-cell therapy due to limited shared target antigens.
- Integrin αvβ3 is crucial for tumor progression and metastasis in several cancers, including melanoma and triple-negative breast cancer.
Purpose of the Study:
- To evaluate the efficacy of novel αvβ3 CAR T-cells against solid tumors, specifically melanoma and triple-negative breast cancer.
- To compare the effectiveness of αvβ3 CAR T-cell constructs with CD28 versus 4-1BB co-stimulation domains.
Main Methods:
- Development and preclinical testing of αvβ3 CAR T-cells in xenograft models of melanoma and breast cancer.
- Systemic administration of αvβ3 CAR T-cells and evaluation of in vivo antitumor activity, metastasis control, and long-term persistence.
Main Results:
- The integrin αvβ3 is highly expressed on melanoma and triple-negative breast cancer, making it an attractive target for CAR T-cell therapy.
- αvβ3 CAR T-cells demonstrated significant in vivo antitumor efficacy, controlling metastasis and achieving long-term persistence.
- CD28 co-stimulation resulted in superior antitumor efficacy, persistence, and durability compared to 4-1BB co-stimulation.
Conclusions:
- αvβ3 CAR T-cells are a promising therapeutic strategy for multiple cancer types, including melanoma and triple-negative breast cancer.
- The CD28 co-stimulation domain enhances the efficacy and persistence of αvβ3 CAR T-cells.
- These findings support the clinical translation of αvβ3 CAR T-cell immunotherapy for solid tumors.
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