TY - JOUR
T1 - Dissecting minimal residual disease dynamics to improve outcome prediction in mantle cell lymphoma: Data from the Fondazione Italiana Linfomi (FIL)-MCL0208 clinical trial
AU - Cordero, Francesca
AU - Ferrero, Simone
AU - Pernice, Simone
AU - Genuardi, Elisa
AU - Volpatto, Daniela
AU - Sirovich, Roberta
AU - Civita, Aurora Maria
AU - Evangelista, Andrea
AU - Ragaini, Simone
AU - Di Rocco, Alice
AU - Re, Alessandro
AU - Stefoni, Vittorio
AU - Cavallo, Federica
AU - Boccomini, Carola
AU - Balzarotti, Monica
AU - Zilioli, Vittorio Ruggero
AU - Gomes da Silva, Maria
AU - Arcaini, Luca
AU - Celli, Melania
AU - Zaccaria, Gian Maria
AU - Tortarolo, Dora
AU - Beccuti, Marco
AU - Hoster, Eva
AU - Pott, Christiane
AU - Macintyre, Elizabeth
AU - Hermine, Olivier
AU - Dreyling, Martin
AU - LADETTO, Marco
PY - 2026
Y1 - 2026
N2 - : Recent clinical trials have underscored the value of repeated minimal residual disease (MRD) measurements as a highly sensitive method for detecting subclinical disease and enabling dynamic risk stratification in hematologic malignancies. Despite its clinical potential, the complex and heterogeneous nature of MRD kinetics presents significant challenges for interpreting and integrating it into routine clinical decision-making. In this study, we present a comprehensive, model-based workflow for the longitudinal analysis of MRD trajectories designed to improve relapse risk prediction. We applied this newly developed workflow to a cohort of patients with mantle cell lymphoma (MCL). MRD measurements were collected from both bone marrow (BM) and peripheral blood (PB) over time, stored in the Fondazione Italiana Linfomi MCL0208 clinical trial. Using our functional MRD workflow, we defined four MRD dynamics that collapsed into two clinically relevant groups: favorable (rapid, sustained negativization) and unfavorable (persistent or fluctuating MRD). Patients with unfavorable profiles showed significantly shorter time to progression (TTP), with hazard ratio (HR) = 4.18 (95% CI: 2.44-7.14) in BM and HR = 5.71 (95% CI: 2.86-11.42) in PB. External validation in the European MCL Network "Younger trial" confirmed the predictive power of this stratification, with Kaplan-Meier analyses demonstrating significant prognostic discrimination. The most informative temporal windows for patient clustering vary by tissue. Early-phase BM assessments offer greater discriminatory power, whereas late-phase assessments are most informative in PB. These findings indicate that longitudinal MRD assessment in PB represents a clinically actionable strategy that could reduce dependence on invasive BM procedures.
AB - : Recent clinical trials have underscored the value of repeated minimal residual disease (MRD) measurements as a highly sensitive method for detecting subclinical disease and enabling dynamic risk stratification in hematologic malignancies. Despite its clinical potential, the complex and heterogeneous nature of MRD kinetics presents significant challenges for interpreting and integrating it into routine clinical decision-making. In this study, we present a comprehensive, model-based workflow for the longitudinal analysis of MRD trajectories designed to improve relapse risk prediction. We applied this newly developed workflow to a cohort of patients with mantle cell lymphoma (MCL). MRD measurements were collected from both bone marrow (BM) and peripheral blood (PB) over time, stored in the Fondazione Italiana Linfomi MCL0208 clinical trial. Using our functional MRD workflow, we defined four MRD dynamics that collapsed into two clinically relevant groups: favorable (rapid, sustained negativization) and unfavorable (persistent or fluctuating MRD). Patients with unfavorable profiles showed significantly shorter time to progression (TTP), with hazard ratio (HR) = 4.18 (95% CI: 2.44-7.14) in BM and HR = 5.71 (95% CI: 2.86-11.42) in PB. External validation in the European MCL Network "Younger trial" confirmed the predictive power of this stratification, with Kaplan-Meier analyses demonstrating significant prognostic discrimination. The most informative temporal windows for patient clustering vary by tissue. Early-phase BM assessments offer greater discriminatory power, whereas late-phase assessments are most informative in PB. These findings indicate that longitudinal MRD assessment in PB represents a clinically actionable strategy that could reduce dependence on invasive BM procedures.
UR - https://iris.uniupo.it/handle/11579/229762
U2 - 10.1002/hem3.70375
DO - 10.1002/hem3.70375
M3 - Article
SN - 2572-9241
VL - 10
JO - HemaSphere
JF - HemaSphere
IS - 5
ER -