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The International Consensus Classification of Acute Leukemias of Ambiguous Lineage

孟菲斯 图书馆学 医学 梅德林 生物 家庭医学 政治学 计算机科学 法学 植物
作者
Olga K. Weinberg,Daniel A. Arber,Hartmut Döhner,Charles G. Mullighan,Etan Orgel,Anna Porwit,Richard M. Stone,Michael J. Borowitz
出处
期刊:Blood [Elsevier BV]
被引量:13
标识
DOI:10.1182/blood.2022019493
摘要

Letter to Blood| May 4, 2023 The International Consensus Classification of acute leukemias of ambiguous lineage Olga K. Weinberg, Olga K. Weinberg 1Department of Pathology, University of Texas Southwestern Medical Center Dallas, TX https://orcid.org/0000-0002-4250-3891 Search for other works by this author on: This Site PubMed Google Scholar Daniel A. Arber, Daniel A. Arber 2Department of Pathology, University of Chicago, Chicago, IL https://orcid.org/0000-0002-2160-9689 Search for other works by this author on: This Site PubMed Google Scholar Hartmut Döhner, Hartmut Döhner 3Department of Internal Medicine III, Ulm University Hospital, Ulm, Germany https://orcid.org/0000-0003-2116-5536 Search for other works by this author on: This Site PubMed Google Scholar Charles G. Mullighan, Charles G. Mullighan 4Department of Pathology, St. Jude Children's Research Hospital, Memphis, TN https://orcid.org/0000-0002-1871-1850 Search for other works by this author on: This Site PubMed Google Scholar Etan Orgel, Etan Orgel 5Division of Hematology/Oncology, Children's Hospital Los Angeles, Norris Comprehensive Cancer Center, Keck School of Medicine, University of Southern California, Los Angeles, CA https://orcid.org/0000-0002-1487-6818 Search for other works by this author on: This Site PubMed Google Scholar Anna Porwit, Anna Porwit 6Division of Oncology and Pathology, Department of Clinical Sciences, Faculty of Medicine, Lund University, Lund, Sweden Search for other works by this author on: This Site PubMed Google Scholar Richard M. Stone, Richard M. Stone 7Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, MA Search for other works by this author on: This Site PubMed Google Scholar Michael J. Borowitz Michael J. Borowitz 8Department of Pathology, Johns Hopkins Medical Institutions, Baltimore, MD Search for other works by this author on: This Site PubMed Google Scholar Blood (2023) 141 (18): 2275–2277. https://doi.org/10.1182/blood.2022019493 Article history Submitted: December 21, 2022 Accepted: February 17, 2023 First Edition: March 6, 2023 Share Icon Share Facebook Twitter LinkedIn Email Tools Icon Tools Request Permissions Cite Icon Cite Search Site Citation Olga K. Weinberg, Daniel A. Arber, Hartmut Döhner, Charles G. Mullighan, Etan Orgel, Anna Porwit, Richard M. Stone, Michael J. Borowitz; The International Consensus Classification of acute leukemias of ambiguous lineage. Blood 2023; 141 (18): 2275–2277. doi: https://doi.org/10.1182/blood.2022019493 Download citation file: Ris (Zotero) Reference Manager EasyBib Bookends Mendeley Papers EndNote RefWorks BibTex toolbar search Search Dropdown Menu toolbar search search input Search input auto suggest filter your search All ContentAll JournalsBlood Search Subjects: Hematopoiesis and Stem Cells, Myeloid Neoplasia TO THE EDITOR: The International Consensus Classification of Myeloid and Lymphoid Neoplasms is the result of the findings of a clinical advisory committee (CAC) meeting with involvement by an international group of hematologists, oncologists, pathologists, and geneticists.1,2 The formal CAC meeting, however, did not address potential changes to the classification of acute leukemias of ambiguous lineage (ALAL); a CAC subgroup was created to address this issue (Table 1). ALAL include biologically diverse leukemias that fail to show commitment to either the myeloid or lymphoid lineages or show evidence of commitment to more than 1 lineage.1-3 Cases in the former group are referred to as acute undifferentiated leukemias (AUL), whereas those in the latter are identified as mixed-phenotype acute leukemias (MPAL). One of the major challenges in the subclassification of ALAL in general and MPAL in... References 1.Arber DA, Orazi A, Hasserjian RP, et al. International Consensus Classification of Myeloid Neoplasms and Acute Leukemias: integrating morphologic, clinical, and genomic data. Blood. 2022;140(11):1200-1228.Google ScholarCrossrefSearch ADS PubMed 2.Campo E, Jaffe ES, Cook JR, et al. The International Consensus Classification of Mature Lymphoid Neoplasms: a report from the Clinical Advisory Committee. Blood. 2022;140(11):1229-1253.Google ScholarCrossrefSearch ADS PubMed 3.Khoury JD, Solary E, Abla O, et al. The 5th edition of the World Health Organization Classification of Haematolymphoid Tumours: Myeloid and Histiocytic/Dendritic Neoplasms. Leukemia. 2022;36(7):1703-1719.Google ScholarCrossrefSearch ADS PubMed 4.Aggarwal N, Weinberg OK. Update on acute leukemias of ambiguous lineage. Clin Lab Med. 2021;41(3):453-466.Google ScholarCrossrefSearch ADS PubMed 5.Alexander TB, Orgel E. Mixed phenotype acute leukemia: current approaches to diagnosis and treatment. Curr Oncol Rep. 2021;23(2):22.Google ScholarCrossrefSearch ADS PubMed 6.World Health Organization. Classification of Tumours of Haematopoietic and Lymphoid Tissues. IARC; 2008.7.Toba K, Hanawa H, Fuse I, et al. Difference in CD22 molecules in human B cells and basophils. Exp Hematol. 2002;30(3):205-211.Google ScholarCrossrefSearch ADS PubMed 8.Lewis RE, Cruse JM, Sanders CM, Webb RN, Suggs JL. Aberrant expression of T-cell markers in acute myeloid leukemia. Exp Mol Pathol. 2007;83(3):462-463.Google ScholarCrossrefSearch ADS PubMed 9.van den Ancker W, Westers TM, de Leeuw DC, et al. A threshold of 10% for myeloperoxidase by flow cytometry is valid to classify acute leukemia of ambiguous and myeloid origin. Cytometry B Clin Cytom. 2013;84(2):114-118.Google ScholarCrossrefSearch ADS PubMed 10.Borowitz MJ. Mixed phenotype acuteleukemia. Cytometry B Clin Cytom. 2014;86(3):152-153.Google ScholarCrossrefSearch ADS PubMed 11.Weinberg OK, Hasserjian RP, Baraban E, et al. Clinical, immunophenotypic, and genomic findings of acute undifferentiated leukemia and comparison to acute myeloid leukemia with minimal differentiation: a study from the bone marrow pathology group. Mod Pathol. 2019;32(9):1373-1385.Google ScholarCrossrefSearch ADS PubMed 12.Alexander TB, Gu Z, Iacobucci I, et al. The genetic basis and cell of origin of mixed phenotype acute leukaemia. Nature. 2018;562(7727):373-379.Google ScholarCrossrefSearch ADS PubMed 13.Giacomo DD, La Starza R, Gorello P, et al. 14q32 rearrangements deregulating BCL11B mark a distinct subgroup of T-lymphoid and myeloid immature acute leukemia. Blood. 2021;138(9):773-784.Google ScholarPubMed 14.Wang W, Beird H, Kroll CJ, et al. T(6;14)(q25;q32) involves BCL11B and is highly associated with mixed-phenotype acute leukemia, T/myeloid. Leukemia. 2020;34(9):2509-2512.Google ScholarCrossrefSearch ADS PubMed 15.Montefiori LE, Bendig SJ, Gu Z, et al. Enhancer hijacking drives oncogenic BCL11B expression in lineage-ambiguous stem cell leukemia. Cancer Discov. 2021;11(11):2846-2867.Google ScholarCrossrefSearch ADS PubMed 16.Takahashi K, Wang F, Morita K, et al. Integrative genomic analysis of adult mixed phenotype acute leukemia delineates lineage associated molecular subtypes. Nat Commun. 2018;9(1):2670.Google ScholarCrossrefSearch ADS PubMed 17.Hrusak O, de Haas V, Stancikova J, et al. International cooperative study identifies treatment strategy in childhood ambiguous lineage leukemia. Blood. 2018;132(3):264-276.Google ScholarCrossrefSearch ADS PubMed 18.Orgel E, Alexander TB, Wood BL, et al. Mixed-phenotype acute leukemia: a cohort and consensus research strategy from the Children's Oncology Group Acute Leukemia of Ambiguous Lineage Task Force. Cancer. 2020;126(3):593-601.Google ScholarCrossrefSearch ADS PubMed 19.Shimizu H, Yokohama A, Hatsumi N, et al. Philadelphia chromosome-positive mixed phenotype acute leukemia in the imatinib era. Eur J Haematol. 2014;93(4):297-301.Google ScholarCrossrefSearch ADS PubMed 20.Kurzer JH, Weinberg OK. To B- or not to B-: a review of lineage switched acute leukemia. Int J Lab Hematol. 2022;44(suppl 1):64-70.Google ScholarPubMed 21.Novakova M, Zaliova M, Fiser K, et al. DUX4r, ZNF384r and PAX5-P80R mutated B-cell precursor acute lymphoblastic leukemia frequently undergo monocytic switch. Haematologica. 2021;106(8):2066-2075.Google ScholarCrossrefSearch ADS PubMed © 2023 by The American Society of Hematology2023 © 2023 by The American Society of Hematology2023 You do not currently have access to this content. Sign in via your Institution

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