Acute Myeloid Leukemia (AML) is a highly heterogeneous hematologic malignancy characterized by the clonal expansion of myeloid precursors, leading to impaired differentiation and bone marrow failure. Despite decades of research, AML remains one of the most challenging leukemias to treat, with high relapse rates and limited long-term survival. Recent advances in genomics, single-cell technologies, and targeted therapeutics have expanded our understanding of disease mechanisms; however, translating these findings into consistent clinical benefits requires robust, reproducible, and standardized experimental methodologies.
This Collection aims to encompass a broad spectrum of methodologies that advance the precision, reproducibility, and translational potential of AML research. It will include diverse experimental, analytical, and computational techniques that contribute to understanding disease biology, identifying therapeutic targets, and evaluating treatment efficacy across basic, translational, and clinical contexts.
By consolidating innovative and standardized methodologies, this collection will serve as a comprehensive resource for researchers and clinicians striving to bridge the gap between laboratory discoveries and clinical applications. It will promote methodological transparency, facilitate cross-disciplinary collaboration, and accelerate the development of novel therapeutic strategies to improve outcomes for patients with AML.
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2026
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Mariapia Riso1,2,3, Prachiben P. Patel1,2,3, Jinghang Zhang4, Aditi Shastri1,2,3,5, Samarpana Chakraborty1,2,3
1Department of Developmental & Molecular Biology, Albert Einstein College of Medicine, 2Ruth L. and David S. Gottesman Stem Cell Institute, Albert Einstein College of Medicine, 3Montefiore-Einstein Comprehensive Cancer Center, Albert Einstein College of Medicine, 4Albert Einstein Flow Cytometry Core, Albert Einstein College of Medicine, 5Department of Hematology Oncology, Montefiore Medical Center, Albert Einstein College of Medicine
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2026
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Adriana Plesa*1,2, Florent Dumezy3, Stéphanie Mathis4, Isabelle Arnoux5, Veronique Saada6, Valerie Bardet7, Iole Oster1, Bouchra Badaoui8, Elsa Bera9, Edouard Bonneville10, Boutheina Bouslama11, Nicolas Chapuis12, Clementine Chauvel4, Edouard Cornet13, Louis Thomas Dannus14, Camille Debord15, Fréderic Feger16, Jean Feuillard17, Thomas Fournet18, Francine Garnache18, Franck Geneviève19, Delphine Gerard20, Valerie Goncalves Monteiro21, Julien Guy22, Veronique Harrivel23, Claire Hemar24, Cassandra Jadeau17, Caroline Mayeur-Rousse15, Hélène Lapillonne11, Veronique Latger-Cannard20, Magali Le Garff-Tavernier25, Pierre Lemaire4, Remi Letestu26, Anne Catherine Lhoumeau27, Delphine Manzoni1, Aguirre Mimoun28, Vanessa Nivaggioni5, Jennifer Osman29, Victoria Raggueneau29, Hubert Rambaud19, Tatiana Raskovalova10, Anne Roggy18, Mikael Roussel30, Didier Sciortino27, Valerie Soenen3, François Vergez31, Richard Veyrat Masson14, Jean Philippe Vial28, Manon Vogrig32, Orianne Wagner-Ballon8,35, Jaja Zhu7, Karine Celli-Lebras33, Raphaël Itzykson34,36, Christian Recher37, Hervé Dombret33,34, Claude Preudhomme3,38, Christophe Roumier*3,38
1Laboratory of Hematology and Flow cytometry, Lyon-Sud Hospital, 2CRCL INSERM 1052/CNRS 5286, University of Lyon, 3Laboratory of Hematology and Flow cytometry, CHU-Lille, 4Laboratory of Hematology and Flow cytometry, Saint Louis Hospital, 5Laboratory of Hematology and Flow cytometry, APHM-Marseille, 6Laboratory of Hematology and Flow cytometry, IGR, 7Laboratory of Hematology and Flow cytometry, Ambroise Pare University Hospital, 8Departement d'Hematologie et Immunologie Biologiques, Hopitaux Universitaires Henri Mondor, 9Laboratory of Hematology and Flow cytometry, CHU-Rouen, 10Laboratory of Immunology and Flow cytometry, CHU-Grenoble, 11Laboratory of Hematology and Flow cytometry, Trousseau Hospital, 12Laboratory of Hematology and Flow cytometry, Cochin Hospital, 13Laboratory of Hematology and Flow cytometry, CHU-Caen, 14Laboratory of Hematology and Flow cytometry, CHU-Clermont Ferrand, 15Laboratory of Hematology and Flow cytometry, CHU-Nantes, 16Laboratory of Hematology and Flow cytometry, Saint Antoine Hospital, 17Laboratory of Hematology and Flow cytometry, CHU-Limoges, 18Laboratory of Hematology and Flow cytometry, CHU-Besancon, 19Laboratory of Hematology and Flow cytometry, CHU-Angers, 20Laboratory of Hematology and Flow cytometry, CHU-Nancy, 21Laboratory of Hematology and Flow cytometry, CHU-Reims, 22Laboratory of Hematology and Flow cytometry, CHU-Dijon, 23Laboratory of Hematology and Flow cytometry, CHU-Amiens, 24Laboratory of Hematology and Flow cytometry, CH-Valenciennes, 25Laboratory of Hematology and Flow cytometry, Pitie Salpetriere Hospital, 26Laboratory of Hematology and Flow cytometry, Avicenne Hospital, 27Laboratory of Hematology and Flow cytometry, IPC-Marseille, 28Laboratory of Hematology and Flow cytometry, CHU-Bordeaux, 29Laboratory of Hematology and Flow cytometry, Versailles Hospital, 30Laboratory of Hematology and Flow cytometry, CHU-Rennes, 31Laboratory of Hematology and Flow cytometry, CHU-Toulouse, 32Laboratory of Hematology and Flow cytometry, CHU-Saint Etienne, 33Acute Leukem French Association Group Coordination, IRSL, 34Department of Hematology, Saint Louis Hospital, 35INSERM U955 IMRB, Universite Paris-Est Creteil (UPEC), 36Service Hematologie Adultes, Hopital Saint Louis, 37Department of Hematology, CHU Toulouse, Universite de Toulouse, 38UMR9020 CNRS-UMR-S1277 INSERM, University of Lille
A standardized protocol for isolating and defining lineage markers in human AML patient-derived xenograft models
Aditi Shastri*1,
Samarpana Chakraborty*2
1Albert Einstein College of Medicine,
2Albert Einstein College of Medicine