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Oncolytic virus–mediated expansion of dual-specific CAR T cells improves efficacy against solid tumors in mice

Laura EvginDepartment of Molecular Medicine, Mayo Clinic, Rochester, MN 55905, USATim KottkeDepartment of Molecular Medicine, Mayo Clinic, Rochester, MN 55905, USAJason M. TonneDepartment of Molecular Medicine, Mayo Clinic, Rochester, MN 55905, USAJill ThompsonDepartment of Molecular Medicine, Mayo Clinic, Rochester, MN 55905, USAAmanda L. HuffDepartment of Molecular Medicine, Mayo Clinic, Rochester, MN 55905, USAJacob P. van VlotenDepartment of Molecular Medicine, Mayo Clinic, Rochester, MN 55905, USAMadelyn MooreDepartment of Molecular Medicine, Mayo Clinic, Rochester, MN 55905, USAJosefine MichaelDepartment of Molecular Medicine, Mayo Clinic, Rochester, MN 55905, USAChristopher B. DriscollDepartment of Molecular Medicine, Mayo Clinic, Rochester, MN 55905, USAJosé S. PulidoDepartment of Molecular Medicine, Mayo Clinic, Rochester, MN 55905, USAEric SwansonVaccine Research Group, Mayo Clinic, Rochester, MN 55905, USARichard B. KennedyVaccine Research Group, Mayo Clinic, Rochester, MN 55905, USAMatt CoffeyOncolytics Biotech Incorporated, Calgary, AB, CanadaHoura LoghmaniOncolytics Biotech Incorporated, Calgary, AB, CanadaLuis Sánchez-PérezDepartment of Neurosurgery, Duke University, Durham, NC 27710, USAGloria OlivierMayo Clinic Ventures, Mayo Clinic, Rochester, MN 55905, USAKevin J. HarringtonDivision of Radiotherapy and Imaging, Institute of Cancer Research, Chester Beatty Laboratories, London SW3 6JB, UKHardev PandhaFaculty of Health and Medical Sciences, University of Surrey, Guildford GU2 7WG, UKAlan MelcherDivision of Radiotherapy and Imaging, Institute of Cancer Research, Chester Beatty Laboratories, London SW3 6JB, UKRosa María DíazDepartment of Molecular Medicine, Mayo Clinic, Rochester, MN 55905, USARichard G. VileDepartment of Immunology, Mayo Clinic, Rochester, MN 55905, USA
2022en
ABI

Аннотация

Oncolytic viruses (OVs) encoding a variety of transgenes have been evaluated as therapeutic tools to increase the efficacy of chimeric antigen receptor (CAR)-modified T cells in the solid tumor microenvironment (TME). Here, using systemically delivered OVs and CAR T cells in immunocompetent mouse models, we have defined a mechanism by which OVs can potentiate CAR T cell efficacy against solid tumor models of melanoma and glioma. We show that stimulation of the native T cell receptor (TCR) with viral or virally encoded epitopes gives rise to enhanced proliferation, CAR-directed antitumor function, and distinct memory phenotypes. In vivo expansion of dual-specific (DS) CAR T cells was leveraged by in vitro preloading with oncolytic vesicular stomatitis virus (VSV) or reovirus, allowing for a further in vivo expansion and reactivation of T cells by homologous boosting. This treatment led to prolonged survival of mice with subcutaneous melanoma and intracranial glioma tumors. Human CD19 CAR T cells could also be expanded in vitro with TCR reactivity against viral or virally encoded antigens and was associated with greater CAR-directed cytokine production. Our data highlight the utility of combining OV and CAR T cell therapy and show that stimulation of the native TCR can be exploited to enhance CAR T cell activity and efficacy in mice.

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