Stemness as the engine of checkpoint durability

Por: Hotchkiss, Richard S [Autor]Colaborador(es): DiPersio, John FTipo de material: TextoTextoIdioma: Inglés Descripción: páginas: 2374-2377Tema(s): CANCER | GENÉTICA | HEMATOLOGÍA | INMUNIDAD En: The New England Journal of MedicineResumen: Checkpoint inhibitors have transformed cancer therapy, with 250,000 to 400,000 patients treated annually in the United States. By blocking programmed cell death protein 1 (PD-1) or its ligand (PD-L1), checkpoint inhibitors suppress inhibitory signals that restrain T-cell activation, thereby restoring antitumor immunity. Despite early and sometimes dramatic responses, clinical benefits often wane. Retrospective analyses of checkpoint-inhibitor rechallenge show lower response rates and diminished durability as compared with initial treatment. These observations lead to the question: can prolonged or intensified PD-1 or PD-L1 blockade paradoxically compromise the long-term immune fitness required for sustained tumor control? A recent study by Hor et al. suggests that it does and provides a mechanistic framework that may reshape how checkpoint inhibitors are deployed and their durability extended.
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Colección General NEJM (Navegar estantería) Vol.394, No.23 (2026) Disponible NEJM007

Checkpoint inhibitors have transformed cancer therapy, with 250,000 to 400,000 patients treated annually in the United States. By blocking programmed cell death protein 1 (PD-1) or its ligand (PD-L1), checkpoint inhibitors suppress inhibitory signals that restrain T-cell activation, thereby restoring antitumor immunity. Despite early and sometimes dramatic responses, clinical benefits often wane. Retrospective analyses of checkpoint-inhibitor rechallenge show lower response rates and diminished durability as compared with initial treatment. These observations lead to the question: can prolonged or intensified PD-1 or PD-L1 blockade paradoxically compromise the long-term immune fitness required for sustained tumor control? A recent study by Hor et al. suggests that it does and provides a mechanistic framework that may reshape how checkpoint inhibitors are deployed and their durability extended.