Acute myeloid leukemia management and research in 2025

H Hagop M. Kantarjian (Department of Leukemia The University of Texas MD Anderson Cancer Center Houston Texas USA) C Courtney D. DiNardo (Department of Leukemia The University of Texas MD Anderson Cancer Center Houston Texas USA) T Tapan M. Kadia (Department of Leukemia The University of Texas MD Anderson Cancer Center Houston Texas USA) N Naval G. Daver (Department of Leukemia The University of Texas MD Anderson Cancer Center Houston Texas USA) J Jessica K. Altman (Division of Hematology/Oncology Department of Medicine Robert H. Lurie Comprehensive Cancer Center Northwestern University Chicago Illinois USA) E Eytan M. Stein (Leukemia Service Department of Medicine Memorial Sloan Kettering Cancer Center New York New York USA) E Elias Jabbour (Department of Leukemia The University of Texas MD Anderson Cancer Center Houston Texas USA) C Charles A. Schiffer (Karmanos Cancer Center Wayne State University School of Medicine Detroit Michigan USA) A Amy Lang (START Center for Cancer Care San Antonio Texas USA) F Farhad Ravandi (Department of Leukemia The University of Texas MD Anderson Cancer Center Houston Texas USA)

Abstract

Abstract The first 5 decades of research in acute myeloid leukemia (AML) were dominated by the cytarabine plus anthracyclines backbone, with advances in strategies including allogeneic hematopoietic stem cell transplantation, high‐dose cytarabine, supportive care measures, and targeted therapies for the subset of patients with acute promyelocytic leukemia. Since 2017, a turning point in AML research, 12 agents have received regulatory approval for AML in the United States: venetoclax (BCL2 inhibitor); gemtuzumab ozogamicin (CD33 antibody–drug conjugate); midostaurin, gilteritinib, and quizartinib (fms‐like tyrosine kinase 3 inhibitors); ivosidenib, olutasidenib, and enasidenib (isocitrate dehydrogenase 1 and 2 inhibitors); oral azacitidine (a partially absorbable formulation); CPX351 (liposomal encapsulation of cytarabine:daunorubicin at a molar ratio of 5:1); glasdegib (hedgehog inhibitor); and recently revumenib (menin inhibitor; approved November 2024). Oral decitabine‐cedazuridine, which is approved as a bioequivalent alternative to parenteral hypomethylating agents in myelodysplastic syndrome, can be used for the same purpose in AML. Menin inhibitors, CD123 antibody–drug conjugates, and other antibodies targeting CD123, CD33, and other surface markers are showing promising results. Herein, the authors review the frontline and later line therapies in AML and discuss important research directions.

Article Details

Volume / Issue Vol. 75, Issue 1
Published January 01, 2025
Pages 46-67
ISSN 0007-9235
Publisher Wiley

Journal Info

CA: A Cancer Journal for Clinicians

Wiley

ISSN: 0007-9235 Open Access Q1 Medicine

Authors (10)

H

Hagop M. Kantarjian

Department of Leukemia The University of Texas MD Anderson Cancer Center Houston Texas USA

C

Courtney D. DiNardo

Department of Leukemia The University of Texas MD Anderson Cancer Center Houston Texas USA

T

Tapan M. Kadia

Department of Leukemia The University of Texas MD Anderson Cancer Center Houston Texas USA

N

Naval G. Daver

Department of Leukemia The University of Texas MD Anderson Cancer Center Houston Texas USA

J

Jessica K. Altman

Division of Hematology/Oncology Department of Medicine Robert H. Lurie Comprehensive Cancer Center Northwestern University Chicago Illinois USA

E

Eytan M. Stein

Leukemia Service Department of Medicine Memorial Sloan Kettering Cancer Center New York New York USA

E

Elias Jabbour

Department of Leukemia The University of Texas MD Anderson Cancer Center Houston Texas USA

C

Charles A. Schiffer

Karmanos Cancer Center Wayne State University School of Medicine Detroit Michigan USA

A

Amy Lang

START Center for Cancer Care San Antonio Texas USA

F

Farhad Ravandi

Department of Leukemia The University of Texas MD Anderson Cancer Center Houston Texas USA