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Biology subjects

Chavez, A. G. T.

Publications and source records attributed to Chavez, A. G. T..

2 recordsLinked to original sources

Targeting Mesothelin via the native T cell receptor

Mesothelin (MSLN) is a GPI-anchored cell surface glycoprotein that is overexpressed in various solid tumors, including mesothelioma, triple-negative breast cancer, colon, ovarian and pancreatic cancer, with restricted normal tissue expression. To explore the immunogenicity and immunotherapeutic potential of MSLN to T cells with native receptor specificity, 29 individuals of diverse HLA backgrounds were interrogated for T cell activity against MSLN. Twenty one (72%) subjects (21/29) mounted a specific T cell response when repetitively challenged with MSLN antigen. Reactive cells were Th1 polarized, polyfunctional, predominantly detected in the CD8+ T cell compartment and cytotoxic toward autologous and MSLN+/HLA-matched tumor cell lines in conventional 2D in vitro assays. Furthermore, these cells produced potent anti-tumor effects in a novel 3D tumor spheroid model system established to evaluate the safety and potency of reactive cells against tumors including pancreatic, cervical, and colorectal cancer and mesothelioma. Taken together, these findings establish the feasibility of targeting MSLN using adoptively transferred T cells with native antigen specificity.

cell biology↗

IL-7 armed binary CAR T cell strategy to augment potency against solid tumors

Clinical studies of T cells engineered with chimeric antigen receptor (CAR) targeting CD19 in B-cell malignancies have demonstrated that relapse due to target antigen (CD19) loss or limited CAR T cell persistence is a common occurrence. The possibility of such events is greater in solid tumors, which typically display more heterogeneous antigen expression patterns and are known to directly suppress effector cell proliferation and persistence. T cell engineering strategies to overcome these barriers are being explored. However, strategies to simultaneously address both antigen heterogeneity and T cell longevity, while localizing anti-tumor effects at disease sites, remain limited. In this study we explore a dual antigen targeting strategy by directing independent CARs against the solid tumor targets PSCA and MUC1. To enhance functional persistence in a tumor-localized manner, we expressed the transgenic IL-7 cytokine and receptor (IL-7R) in respective CAR products. We now demonstrate the potency and durable antitumor effects of this binary strategy in a pancreatic tumor model.

immunology↗