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Large T cell clones expressing immune checkpoints increase during multiple myeloma evolution and predict treatment resistance

Autores: Botta, C. (Autor de correspondencia); Pérez Ruiz, Cristina; Larrayoz Ilundain, Marta; Puig, N.; Cedena, M. T.; Termini, Rosalinda; Goicoechea Oroz, Ibai; Rodríguez Díaz, Saray; Zabaleta Azpiroz, Aintzane; López de Arancibia, Aitziber; Sarvide Plano, Sarai; Blanco Fernández, Laura; Papetti, D. M.; Nobile, M. S.; Besozzi, D.; Gentile, M.; Correale, P.; Siragusa, S.; Oriol, A.; Gonzalez-Garcia, M. E.; Sureda, A.; de Arriba, F.; Tamayo, R. R.; Moraleda, J. M.; Gironella, M.; Hernandez, M. T.; Bargay, J.; Palomera, L.; Pérez-Montaña, A.; Goldschmidt, H.; Avet-Loiseau, H.; Roccaro, A.; Orfao, A.; Martinez-Lopez, J.; Rosiñol, L.; Lahuerta, J. J. ; Blade, J.; Mateos, M. V.; San Miguel Izquierdo, Jesús; Martínez Climent, José Ángel; Paiva, Bruno (Autor de correspondencia)
Título de la revista: NATURE COMMUNICATIONS
ISSN: 2041-1723
Volumen: 14
Número: 1
Páginas: 5825
Fecha de publicación: 2023
Resumen:
Tumor recognition by T cells is essential for antitumor immunity. A comprehensive characterization of T cell diversity may be key to understanding the success of immunomodulatory drugs and failure of PD-1 blockade in tumors such as multiple myeloma (MM). Here, we use single-cell RNA and T cell receptor sequencing to characterize bone marrow T cells from healthy adults (n = 4) and patients with precursor (n = 8) and full-blown MM (n = 10). Large T cell clones from patients with MM expressed multiple immune checkpoints, suggesting a potentially dysfunctional phenotype. Dual targeting of PD-1 + LAG3 or PD-1 + TIGIT partially restored their function in mice with MM. We identify phenotypic hallmarks of large intratumoral T cell clones, and demonstrate that the CD27- and CD27+ T cell ratio, measured by flow cytometry, may serve as a surrogate of clonal T cell expansions and an independent prognostic factor in 543 patients with MM treated with lenalidomide-based treatment combinations. Myelomagenesis progresses through well-defined pre-malignant states. Here, using single-cell RNA sequencing and T cell receptor repertoire analysis of bone marrow T cells in patients at different stages of myelomagenesis, the authors identify large clonotypic expansions characterized by the expression of multiple immune checkpoints.
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