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Development of Highly Effective Anti-Mesothelin hYP218 Chimeric Antigen Receptor T Cells With Increased Tumor
Sakshi Tomar1, Jingli Zhang1, Manakamana Khanal1
1Thoracic and GI Malignancies Branch, CCR, NCI, NIH, Bethesda, Maryland.
Abstract:
Mesothelin targeting CAR T cells have limited activity in patients. In this study, we sought to determine if efficacy of anti-mesothelin CAR T cells is dependent on the mesothelin epitopes that are recognized by them. To do so, we developed hYP218 (against membrane-proximal epitope) and SS1 (against membrane-distal epitope) CAR T cells. Their efficacy was assessed in vitro using mesothelin-positive tumor cell lines and in vivo in NSG mice with mesothelin-expressing ovarian cancer (OVCAR-8), pancreatic cancer (KLM-1), and mesothelioma patient-derived (NCI-Meso63) tumor xenografts. Persistence and tumor infiltration of CAR T cells was determined using flow cytometry. hYP218 CAR T cells killed cancer cells more efficiently than SS1 CAR T cells, with a two- to fourfold lower ET50 value (effector-to-target ratio for 50% killing of tumor cells). In mice with established tumors, single intravenous administration of hYP218 CAR T cells lead to improved tumor response and survival compared with SS1 CAR T cells, with complete regression of OVCAR-8 and NCI-Meso63 tumors. Compared with SS1 CAR T cells, there was increased peripheral blood expansion, persistence, and tumor infiltration of hYP218 CAR T cells in the KLM-1 tumor model. Persistence of hYP218 CAR T cells in treated mice led to antitumor immunity when rechallenged with KLM-1 tumor cells. Our results show that hYP218 CAR T cells, targeting mesothelin epitope close to cell membrane, are very effective against mesothelin-positive tumors and are associated with increased persistence and tumor infiltration. These results support its clinical development to treat patients with mesothelin-expressing cancers.
Insights
New CAR T cells targeting a membrane-proximal mesothelin epitope (hYP218) show superior efficacy against ovarian, pancreatic, and mesothelioma tumors compared to those targeting a membrane-distal epitope (SS1). This improved activity is linked to enhanced persistence and tumor infiltration, supporting clinical development.
Area of Science:
- Immunotherapy
- Oncology
- Cellular Biology
Background:
- Chimeric antigen receptor (CAR) T cells targeting mesothelin show limited clinical efficacy.
- The specific mesothelin epitope targeted by CAR T cells may influence their effectiveness.
Purpose of the Study:
- To investigate if the efficacy of anti-mesothelin CAR T cells depends on the recognized mesothelin epitope.
- To compare the activity of CAR T cells targeting membrane-proximal versus membrane-distal mesothelin epitopes.
Main Methods:
- Development of hYP218 (membrane-proximal epitope) and SS1 (membrane-distal epitope) CAR T cells.
- In vitro assessment of CAR T cell killing of mesothelin-positive tumor cell lines.
- In vivo efficacy studies in NSG mice bearing ovarian, pancreatic, and mesothelioma xenografts.
- Evaluation of CAR T cell persistence and tumor infiltration via flow cytometry.
Main Results:
- hYP218 CAR T cells demonstrated superior in vitro cancer cell killing compared to SS1 CAR T cells (lower ET50).
- Single administration of hYP218 CAR T cells resulted in improved tumor response and survival in mice, achieving complete regression of some tumors.
- hYP218 CAR T cells exhibited increased peripheral blood expansion, persistence, and tumor infiltration in vivo.
- Persistence of hYP218 CAR T cells conferred long-term antitumor immunity upon rechallenge.
Conclusions:
- CAR T cells targeting the membrane-proximal mesothelin epitope (hYP218) are highly effective against mesothelin-positive tumors.
- Enhanced persistence and tumor infiltration contribute to the superior efficacy of hYP218 CAR T cells.
- These findings support the clinical development of hYP218 CAR T cells for treating mesothelin-expressing cancers.
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