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Published on: December 13, 2018
Novel mesothelin-targeted chimeric antigen receptor-modified UNKT cells are highly effective in inhibiting tumor
Wei Jiang1, Guosheng Gu2, Yumin Zhang1
1Biotherapy Center, Harbin Medical University Cancer Hospital, Harbin 150081, China.
Abstract:
The design of chimeric antigen receptors (CAR) significantly enhances the antitumor efficacy of T cells. Although some CAR-T products have been approved by FDA in treating hematological tumors, adoptive immune therapy still faces many difficulties and challenges in the treatment of solid tumors. In this study, we reported a new strategy to treat solid tumors using a natural killer-like T (NKT) cell line which showed strong cytotoxicity to lyse 15 cancer cell lines, safe to normal cells and had low or no Graft-versus-host activity. We thus named it as universal NKT (UNKT). In both direct and indirect 3D tumor-like organ model, UNKT showed efficient tumor-killing properties, indicating that it could penetrate the microenvironment of solid tumors. In mesothelin (MSLN)-positive tumor cells (SKOV-3 and MCF-7), MSLN targeting CAR modified-UNKT cells had enhanced killing potential against MSLN positive ovarian cancer compared with the wild type UNKT, as well as MSLN-CAR-T cells. Compared with CAR-T, Single-cell microarray 32-plex proteomics revealed CAR-UNKT cells express more effector cytokines, such as perforin and granzyme B, and less interleukin-6 after activation. Moreover, our CAR-UNKT cells featured in more multifunctionality than CAR-T cells. CAR-UNKT cells also demonstrated strong antitumor activity in mouse models of ovarian cancer, with the ability to migrate and infiltrate the tumor without inducing immune memory. The fast-in and -out, enhanced and prolonged tumor killing properties of CAR-UNKT suggested a novel cure option of cellular immunotherapy in the treatment of MSLN-positive solid tumors.
Insights
This study introduces universal natural killer-like T (UNKT) cells as a novel cellular immunotherapy for solid tumors. These engineered UNKT cells demonstrate potent, targeted tumor-killing capabilities, offering a promising new treatment option.
Area of Science:
- Immunology
- Oncology
- Cellular Therapy
Background:
- Chimeric antigen receptor (CAR) T-cell therapy shows success in hematological cancers but faces challenges in solid tumors.
- Existing adoptive immunotherapies struggle with solid tumor microenvironments and off-target effects.
Purpose of the Study:
- To develop and evaluate a novel universal natural killer-like T (UNKT) cell line for solid tumor treatment.
- To assess the efficacy of mesothelin (MSLN)-targeted CAR-modified UNKT cells against MSLN-positive solid tumors.
Main Methods:
- Development of a universal NKT (UNKT) cell line with inherent cytotoxicity and low graft-versus-host activity.
- Engineering UNKT cells with a CAR targeting mesothelin (MSLN) for enhanced specificity.
- In vitro and in vivo testing using 3D organoid models and mouse models of ovarian cancer.
Main Results:
- UNKT cells demonstrated broad cytotoxicity against 15 cancer cell lines while sparing normal cells.
- MSLN-CAR-UNKT cells exhibited superior killing of MSLN-positive ovarian cancer cells compared to wild-type UNKT and MSLN-CAR-T cells.
- CAR-UNKT cells showed enhanced effector cytokine production (perforin, granzyme B) and potent antitumor activity in vivo, with tumor infiltration and migration capabilities.
Conclusions:
- Engineered CAR-UNKT cells represent a promising cellular immunotherapy strategy for solid tumors, particularly MSLN-positive cancers.
- CAR-UNKT cells offer enhanced multifunctionality and potent anti-tumor effects, suggesting a novel therapeutic option beyond CAR-T cells.
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