Author:
Gilioli Diego,Fusco Simona,Tavella Teresa,Giannetti Kety,Conti Anastasia,Santoro Antonella,Carsana Edoardo,Beretta Stefano,Schönlein Martin,Gambacorta Valentina,Aletti Federico Mario,Carrabba Matteo Giovanni,Bonini Chiara,Ciceri Fabio,Merelli Ivan,Vago Luca,Schmitt Clemens,Di Micco Raffaella
Abstract
ABSTRACTAcute myeloid leukemia (AML) is an aggressive hematological malignancy often curable only by using intensive chemotherapy. Nonetheless, resistance/early relapses are frequent, underscoring the need to investigate the molecular events occurring shortly after chemotherapy. Therapy-induced senescence (TIS) is a fail-safe tumor suppressive mechanism that may elicit immune-mediated responses contributing to senescent cell clearance. Yet, TIS functional role in AML eradication and immune surveillance early post-chemotherapy remains ill-defined. By combining transcriptional and cellular-based evaluation of senescence markers in AML patient samples, we found upregulation of senescence-associated genes and interferon gene categories with concomitant induction of HLA class I and class II molecules, pointing to a causal link between TIS and leukemia immunogenicity. Consistently, senescence-competent AML samples activated autologous CD4+and CD8+T cells and improved leukemia recognition by both T-cell subsets. Lastly, the anti-leukemic activity of Immune Checkpoint Blockades (ICBs) was enhanced upon senescence engagement in AML. Altogether, our results identify senescence as a potent immune-related anti-leukemic mechanism that may rapidly translate into innovative senescence-based strategies to prevent AML relapse.STATEMENT OF SIGNIFICANCEOur findings uncover a novel link between senescence induction and leukemia immune recognition by T cells via upregulation of antigen presentation machinery components, providing the basis for conceptually novel senescence-based targeted immunotherapeutic regimens for AML patients.
Publisher
Cold Spring Harbor Laboratory
Cited by
5 articles.
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