Parallel single-cell metabolic analysis and extracellular vesicle profiling reveal vulnerabilities with prognostic significance in acute myeloid leukemia

Abstract Acute myeloid leukemia (AML) is an aggressive disease with a high relapse rate. In this study, we map the metabolic profile of CD34+(CD38low/-) AML cells and the extracellular vesicle signatures in circulation from AML patients at diagnosis. CD34+ AML cells display high antioxidant glutathi...

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Main Authors: Dorian Forte, Roberto Maria Pellegrino, Paolo Falvo, Paulina Garcia-Gonzalez, Husam B. R. Alabed, Filippo Maltoni, Davide Lombardi, Samantha Bruno, Martina Barone, Federico Pasini, Francesco Fabbri, Ivan Vannini, Benedetta Donati, Gianluca Cristiano, Chiara Sartor, Simona Ronzoni, Alessia Ciarrocchi, Sandra Buratta, Lorena Urbanelli, Carla Emiliani, Simona Soverini, Lucia Catani, Francesco Bertolini, Rafael José Argüello, Michele Cavo, Antonio Curti
Format: Article
Language:English
Published: Nature Portfolio 2024-12-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-024-55231-9
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Summary:Abstract Acute myeloid leukemia (AML) is an aggressive disease with a high relapse rate. In this study, we map the metabolic profile of CD34+(CD38low/-) AML cells and the extracellular vesicle signatures in circulation from AML patients at diagnosis. CD34+ AML cells display high antioxidant glutathione levels and enhanced mitochondrial functionality, both associated with poor clinical outcomes. Although CD34+ AML cells are highly dependent on glucose oxidation and glycolysis for energy, those from intermediate- and adverse-risk patients reveal increased mitochondrial dependence. Extracellular vesicles from AML are mainly enriched in stem cell markers and express antioxidant GPX3, with their profiles showing potential prognostic value. Extracellular vesicles enhance mitochondrial functionality and dependence on CD34+ AML cells via the glutathione/GPX4 axis. Notably, extracellular vesicles from adverse-risk patients enhance leukemia cell engraftment in vivo. Here, we show a potential noninvasive approach based on liquid ‘cell-extracellular vesicle’ biopsy toward a redefined metabolic stratification in AML.
ISSN:2041-1723