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Costeas, P.

Publications and source records attributed to Costeas, P..

2 recordsLinked to original sources

Endothelin receptor blockade potentiates adoptive T cell and CAR T cell therapies

Adoptive T cell therapies have transformed the treatment of selected haematological malignancies but remain limited in many cancer settings by biological barriers that restrict effective and durable antitumour responses. Here, we investigated whether pharmacological blockade of the endothelin receptor pathway, which regulates vascular, stromal and immune processes relevant to antitumour responses, could enhance T cell-based cellular immunotherapy. Using orthotopic 4T1 triple-negative breast cancer and A20 B cell lymphoma models, we evaluated endothelin receptor blockade with non-engineered adoptive T cell therapy and anti-CD19 CAR T cell therapy, respectively, with or without immune checkpoint inhibition. Endothelin receptor blockade substantially increased objective responses across both therapeutic platforms, while the addition of immune checkpoint inhibition further increased response frequency and promoted maintained complete responses, resulting in the most durable tumour control. Mice achieving maintained complete responses resisted tumour rechallenge, consistent with long-term antitumour immune protection. High-dimensional T cell profiling identified distinct intratumoral T cell states associated with tumour control and elevated CD2 expression as a recurring feature across these populations. Together, these findings identify endothelin receptor blockade as a rational combinatorial strategy for enhancing T cell-based cellular immunotherapy and provide a strong rationale for the clinical evaluation of this therapeutic strategy.

immunology↗

CD2 expression is co-regulated with stemness- and exhaustion-associated factors in human T cells

The CD2-CD58 pathway has been highlighted as a major player in anti-tumour T cell immunity. Our study reveals that CD2 costimulation strength significantly correlates with T cell activation, the average number of cell divisions, fold expansion, and IFN-{gamma} production. Our findings suggest that the correlation of CD2 strength with the level of CD25 expression is a potential regulatory mechanism by which CD2 strength enhances above proliferation parameters. We find that human brain cancer tumour-infiltrating CD8+ and CD4+ T cells exhibit reduced levels of CD2, suggestive of a compromised CD2 strength upon CD2 engagement. Through a genome-wide CRISPR-Cas9 knockout screen, we identified two epigenetic regulators, SUZ12 and BAP1, as positive modulators of CD2 expression. We demonstrate that BAP1 is crucial for the upregulation and sustained high expression of CD2 following T cell activation. We reveal that CD2 is co-regulated with other co-stimulatory/inhibitory receptors, and factors associated with T cell stemness and exhaustion, in a dose-dependent manner. Importantly, we rescue the loss of CD2 due to BAP1 knockout by pharmacological inhibition of histone deacetylases making this a harnessable regulatory pathway. The insight from our study enhance our understanding of CD2-mediated T cell regulation and identify essential regulators of this pathway.

immunology↗