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Allogeneic double-negative CAR-T cells inhibit tumor growth without off-tumor toxicities
Daniel Vasic1,2, Jong Bok Lee1, Yuki Leung1,2
1Toronto General Hospital Research Institute, University Health Network, Toronto, Ontario, Canada.
Abstract:
The development of autologous chimeric antigen receptor T (CAR-T) cell therapies has revolutionized cancer treatment. Nevertheless, the delivery of CAR-T cell therapy faces challenges, including high costs, lengthy production times, and manufacturing failures. To overcome this, attempts have been made to develop allogeneic CAR-T cells using donor-derived conventional CD4+ or CD8+ T cells (Tconvs), but severe graft-versus-host disease (GvHD) and host immune rejection have made this challenging. CD3+CD4-CD8- double-negative T cells (DNTs) are a rare subset of mature T cells shown to fulfill the requirements of an off-the-shelf cellular therapy, including scalability, cryopreservability, donor-independent anticancer function, resistance to rejection, and no observed off-tumor toxicity including GvHD. To overcome the challenges faced with CAR-Tconvs, we evaluated the feasibility, safety, and efficacy of using healthy donor-derived allogeneic DNTs as a CAR-T cell therapy platform. We successfully transduced DNTs with a second-generation anti-CD19-CAR (CAR19) without hampering their endogenous characteristics or off-the-shelf properties. CAR19-DNTs induced antigen-specific cytotoxicity against B cell acute lymphoblastic leukemia (B-ALL). In addition, CAR19-DNTs showed effective infiltration and tumor control against lung cancer genetically modified to express CD19 in xenograft models. CAR19-DNT efficacy was comparable with that of CAR19-Tconvs. However, unlike CAR19-Tconvs, CAR19-DNTs did not cause alloreactivity or xenogeneic GvHD-related mortality in xenograft models. These studies demonstrate the potential of using allogeneic DNTs as a platform for CAR technology to provide a safe, effective, and patient-accessible CAR-T cell treatment option.
Insights
Allogeneic double-negative T cells (DNTs) offer a promising alternative for CAR-T cell therapy. Engineered CAR19-DNTs show potent anti-cancer activity without causing graft-versus-host disease, making them a potentially safer and more accessible treatment option.
Area of Science:
- Immunology
- Cell Therapy
- Oncology
Background:
- Autologous CAR-T cell therapy has transformed cancer treatment but faces challenges like high costs and production delays.
- Allogeneic CAR-T cells from conventional T cells (Tconvs) are hindered by graft-versus-host disease and immune rejection.
- Double-negative T cells (DNTs) possess inherent properties suitable for off-the-shelf cellular therapies, including scalability and resistance to rejection.
Purpose of the Study:
- To evaluate the feasibility, safety, and efficacy of using allogeneic DNTs as a platform for chimeric antigen receptor (CAR) T cell therapy.
- To develop and characterize anti-CD19 CAR-engineered DNTs (CAR19-DNTs) for potential therapeutic applications.
Main Methods:
- DNTs were successfully engineered with a second-generation anti-CD19 CAR (CAR19).
- CAR19-DNTs' cytotoxic activity against B cell acute lymphoblastic leukemia (B-ALL) was assessed.
- In vivo efficacy and safety of CAR19-DNTs were evaluated in xenograft models of B-ALL and CD19-expressing lung cancer.
Main Results:
- CAR19-DNTs demonstrated antigen-specific cytotoxicity against B-ALL cells.
- CAR19-DNTs exhibited effective tumor infiltration and control in xenograft models.
- CAR19-DNTs showed comparable efficacy to CAR19-Tconvs but without causing graft-versus-host disease or mortality in xenograft models.
Conclusions:
- Allogeneic DNTs can be effectively engineered with CARs, retaining their desirable off-the-shelf properties.
- CAR19-DNTs represent a safe and effective alternative to conventional CAR-T cells, offering potential for improved patient accessibility.
- DNTs hold significant promise as a versatile platform for developing next-generation CAR-based immunotherapies.
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