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CAR T Cells Redirected to CD44v6 Control Tumor Growth in Lung and Ovary Adenocarcinoma Bearing Mice
Simona Porcellini1, Claudia Asperti1, Stefano Corna1
1Research Department, MolMed SpA, Milan, Italy.
Abstract:
The main challenge of adoptive therapy with Chimeric Antigen Receptor modified T cells (CAR T) is the application to the field of solid tumors, where the identification of a proper antigen has emerged as one of the major drawbacks to CAR T cell treatment success. CD44 is a glycoprotein involved in cell-cell and cell-matrix interactions. The isoform containing the variant domain 6 of CD44 gene (CD44v6) has been implicated in tumorigenesis, tumor cell invasion and metastasis and represents an attractive target for CAR T cell therapies. Targeting CD44v6 antigen has been shown to control tumor growth in acute myeloid leukemia and multiple myeloma mouse models. While CAR T approach for the treatment of B cell malignancies has shown great success, response rates among patients with solid cancer are less favorable. The purpose of our study was to test the efficacy of CD44v6.CAR T cells, produced in compliance with Good Manufacturing Practice (GMP), in adenocarcinoma tumor models. We generated a bicistronic retroviral vector containing the CD44v6 CAR and the HSV-TK Mut2 suicide gene to enhance the safety of the proposed CAR T cell therapy. CD44v6 transduced CAR T cells were homogeneously positive for ΔLNGFR selection marker, were enriched in T central memory (TCM) and T memory stem cells (TSCM) and displayed a highly activated phenotype. In vitro assays revealed antigen-specific activation and cytotoxicity of human CD44v6.CAR T cells against CD44v6 expressing tumor cell lines. When infused in immunodeficient tumor bearing mice, human CD44v6.CAR T cells were able to reach, infiltrate and proliferate at tumor sites, finally resulting in tumor growth control. Next, we checked if cells produced in compliance with GMP grade standards retained the same antitumor activity of those produced with research grade materials and protocols. Noteworthy, no differences in the potency of the CAR T obtained with the two manufacturing processes were observed. In conclusion, our preclinical results suggest that CD44v6.CAR T based adoptive therapy could be a promising strategy in solid cancer treatment.
Insights
Chimeric Antigen Receptor (CAR T) therapy shows promise for solid tumors by targeting CD44v6. GMP-grade CD44v6.CAR T cells effectively controlled tumor growth in preclinical models, indicating a potential new treatment strategy.
Area of Science:
- Immunotherapy
- Oncology
- Cell Therapy
Background:
- Adoptive therapy with Chimeric Antigen Receptor (CAR T) cells faces challenges in solid tumors due to difficulties in identifying suitable antigens.
- CD44v6, an isoform of CD44, is implicated in tumor progression and metastasis, making it an attractive target for CAR T cell therapy.
Purpose of the Study:
- To evaluate the efficacy of CD44v6.CAR T cells, manufactured under Good Manufacturing Practice (GMP) conditions, in preclinical models of adenocarcinoma.
- To assess the safety and anti-tumor activity of CD44v6.CAR T cells, incorporating a suicide gene for enhanced safety.
Main Methods:
- Generation of a bicistronic retroviral vector encoding CD44v6 CAR and a safety suicide gene (HSV-TK Mut2).
- Characterization of CD44v6.CAR T cells for phenotype, memory subsets (TCM, TSCM), and antigen-specific activity.
- Preclinical evaluation in adenocarcinoma tumor models using GMP-grade and research-grade CAR T cells.
Main Results:
- CD44v6.CAR T cells exhibited antigen-specific activation and cytotoxicity against CD44v6-expressing tumor cells in vitro.
- Infused CD44v6.CAR T cells infiltrated tumors, proliferated, and controlled tumor growth in vivo.
- No significant difference in anti-tumor potency was observed between GMP-grade and research-grade CAR T cells.
Conclusions:
- Preclinical data suggest that CD44v6.CAR T cell therapy is a viable and potentially effective strategy for treating solid cancers.
- The use of GMP-grade manufacturing ensures the consistent potency and safety of CD44v6.CAR T cells for clinical translation.
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