Chimeric antigen receptor (CAR) T-cell therapy has substantially improved outcomes in refractory hematologic malignancies but may cause cardiovascular complications, particularly in the context of cytokine release syndrome (CRS). Real-world data on incidence, severity, and prognostic relevance of cancer therapy–related cardiovascular toxicity (CTR-CVT) defined by the 2022 ESC cardio-oncology guidelines remain in the context of CAR-T cell therapy limited. This retrospective single-center study includes 104 patients treated with CAR T-cells between 09/2019 and 02/2024 for acute lymphoblastic leukemia, non-Hodgkin lymphoma and multiple myeloma. The primary endpoint was new-onset CTR-CVT during hospital stay, defined as cancer therapy–related cardiac dysfunction (CTRCD), arrhythmia, myocardial infarction, cardiogenic shock, or cardiovascular death. Clinical characteristics, biomarkers, echocardiographic parameters, CRS/ICANS severity, and survival outcomes were analyzed. Fifty-two patients (50%) met criteria for CTR-CVT, predominantly due to asymptomatic biomarker elevation. CTRCD occurred in 48.1%, whereas clinically significant events were rare: three patients developed symptomatic CTRCD, one experienced cardiogenic shock, and no myocardial infarctions or cardiovascular deaths were observed. Cardiovascular events occurred early and were associated with higher-grade CRS and ICANS, as well as elevated inflammatory markers. Reduced baseline left ventricular ejection fraction, elevated systolic pulmonary artery pressure, impaired performance status, and beta-blocker use were associated with increased CTR-CVT risk. Survival was numerically lower in patients with CTR-CVT but did not reach statistical significance. Although half of patients fulfilled ESC criteria for CTR-CVT, clinically relevant cardiac events after CAR T-cell therapy were uncommon. These findings suggest potential overclassification driven by biomarker elevations and underscore the importance of emphasizing clinical relevance when assessing cardiotoxicity in CAR T-cell recipients.
J. Voran, C. Richard, Astrid Dempfle et al.· Cardio-Oncology· 0 citations
SnoRNAs are highly expressed in AML and have implications in leukemogenesis and leukemic maintenance. SnoRNAs can be further processed into snoRNA-derived RNAs (sdRNAs). The role of sdRNAs in AML and healthy hematopoiesis remains largely elusive. We characterized sdRNA and snoRNA levels in hematopoietic stem and progenitor cells (HSPCs), healthy WBCs, and 159 intensively treated AML patient samples at initial diagnosis. HSPCs, healthy WBCs, and AML blasts could be differentiated by their sdRNA expression pattern in a cell-type-specific manner. In AML, high sd3'-RNA/snoRNA-host gene ratios were associated with an inverse patient outcome. Particularly, in NPM1-mutated patients with favorable risk stratification and good initial therapy response, high sd3'-RNA ratios identified a subgroup with inferior outcome. High sd3'-RNA ratios were associated with altered oncogenic, inflammatory, and immune response signaling. Forced expression of single sdRNAs, such as sd3'-SNORD78, sd3'-SNORD76, and sd5'-SNORD93, enhanced clonogenic potential in AML and drove sdRNA-specific gene expression signatures in both AML and healthy HSPCs. Exemplarily, we propose and characterize NUDT21, an important regulator of alternative polyadenylation and oncogenic gene expression, as a downstream target of sd3'-SNORD78 in AML. Our data introduce sdRNAs as standalone regulatory effector molecules in healthy hematopoiesis and AML.
R. Zinz, Christian Rohde, C. Pauli et al.· Leukemia· 0 citations
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