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FAB M7: Acute Megakaryoblastic Leukemia—Beyond Morphology

1985/09/01 by Clara D. Bloomfield, RICHARD D. BRUNNING · 1 citation
Medicine · #Acute Myeloid Leukemia Research #Chronic Lymphocytic Leukemia Research #Acute Lymphoblastic Leukemia research #Medicine #Acute megakaryoblastic leukemia #Leukemia #Acute leukemia #Megakaryocyte #Lineage (genetic) #Myelofibrosis #Internal medicine #Bone marrow #Gene #Biology #Genetics

paper · doi:10.7326/0003-4819-103-3-450

openalex publication_date 1985/09/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/22

Abstract

Editorials1 September 1985FAB M7: Acute Megakaryoblastic Leukemia—Beyond MorphologyCLARA D. BLOOMFIELD, M.D., RICHARD D. BRUNNING, M.D.CLARA D. BLOOMFIELD, M.D., RICHARD D. BRUNNING, M.D.Author, Article, and Disclosure Informationhttps://doi.org/10.7326/0003-4819-103-3-450 SectionsAboutPDF ToolsAdd to favoritesDownload CitationsTrack CitationsPermissions ShareFacebookTwitterLinkedInRedditEmail ExcerptThe French-American-British (FAB) leukemia cooperative study group, in this issue (1), adds another category of acute nonlymphocytic leukemia to their classification: acute leukemia of megakaryocyte lineage, or M7. As with prior FAB categories, M7 defines a type of leukemia that has been recognized for many years (2). Recently, as a result of developments in ultrastructural cytochemistry and immunologic phenotyping, acute leukemias of megakaryocytic lineage have been diagnosed increasingly (3-13); at least one group has reported that this type accounts for more than 10% of acute nonlymphocytic leukemias (10). Although a distinct clinical syndrome has not been delineated, it has been...References1. BENNETTCATOVSKYDANIEL JDM. Criteria for the diagnosis of acute leukemia of megakaryocyte lineage (M7): a report of the French-American-British Cooperative Group. Ann Intern Med. 1985;103:460-2. LinkGoogle Scholar2. VON BOROSKARENYI JA. Über einen Fall von akuter Megakaryoblastenleukämie, zugleich einige Bemerkungen zum Problem der akuten Leukämie. Z Klin Med. 1931;118:697-718. Google Scholar3. FLANDRINDANIELVALENSISCHAISONBRETON-GORIUS GMFGJ. Leucémie aiguë à mégacaryoblastes: étude clinique et morphologique de 11 observations. Actual Hematol. 1977;11:200-12. Google Scholar4. DEN OTTOLANDERTE VELDEBREDEROO GJP. Megakaryoblastic leukaemia (acute myelofibrosis): a report of three cases. Br J Haematol. 1979;42:9-20. CrossrefMedlineGoogle Scholar5. BAINCATOVSKYO'BRIEN BDM. Megakaryoblastic leukemia presenting as acute myelofibrosis—a study of four cases with the plateletperoxidase reaction. Blood. 1981;58:206-13. CrossrefMedlineGoogle Scholar6. SULTONSIGAUXIMBERTREYES CFMF. Acute myelodysplasia with myelofibrosis: a report of eight cases. Br J Haematol. 1981;49:11-6. CrossrefMedlineGoogle Scholar7. BEVANROSEGREAVES DMM. Leukaemia of platelet precursors: diverse features in four cases. Br J Haematol. 1982;51:147-64. CrossrefMedlineGoogle Scholar8. MIRCHANDANIPALUTKE IM. Acute megakaryoblastic leukemia. Cancer. 1983;50:2866-72. CrossrefGoogle Scholar9. CHANBRYNESKIM WRT. Acute megakaryoblastic leukemia in early childhood. Blood. 1983;62:92-8. CrossrefMedlineGoogle Scholar10. HUANGLINICHOLSYOUNGKATZMANN MCWJJ. Acute leukemia with megakaryocytic differentiation: a study of 12 cases identified immunocytochemically. Blood. 1984;64:427-39. CrossrefMedlineGoogle Scholar11. KOIKE T. Megakaryoblastic leukemia: the characterization and identification of megakaryoblasts. Blood. 1984;64:683-92. CrossrefMedlineGoogle Scholar12. TABILIOHERRERAD'AGAY AAM. Therapy-related leukemia associated with myelofibrosis: blast cell characterization in six cases. Cancer. 1984;54:1382-91. CrossrefMedlineGoogle Scholar13. RUIZ-ARGÜELLESMARÍN-LOPEZLOBATO-MENDIZABALRUIZ-ARGÜELLESNICHOLSKATZMANN GAEAWJ. Acute megakaryoblastic leukemia: a prospective study of its identification and treatment [Abstract]. Blood. 1984;64:173a. MedlineGoogle Scholar14. BENNETTCATOVSKYDANIEL JDM. Proposals for the classification of the acute leukaemias. Br J Haematol. 1976;33:451-8. CrossrefMedlineGoogle Scholar15. BENNETTCATOVSKYDANIEL JDM. Proposals for the classification of the myelodysplastic syndromes. Br J Haematol. 1982;51:189-99. CrossrefMedlineGoogle Scholar16. BENNETTCATOVSKYDANIEL JDM. Proposed revised criteria for the classification of acute myeloid leukemia. Ann Intern Med. 1985;103. (In press). LinkGoogle Scholar17. ARTHURBLOOMFIELD DC. Partial deletion of the long arm of chromosome 16 and bone marrow eosinophilia in acute nonlymphocytic leukemia: a new association. Blood. 1983;61:994-8. CrossrefMedlineGoogle Scholar18. Fourth International Workshop on Chromosomes in Leukemia, 1982: clinical significance of chromosomal abnormalities in acute nonlymphoblastic leukemia. Cancer Genet Cytogenet. 1984;11:332-50. CrossrefMedlineGoogle Scholar19. SOBOLROYSTONLEBIEN RIT. Adult acute lymphoblastic leukemia phenotypes defined by monoclonal antibodies. Blood. 1985;65:730-5. CrossrefMedlineGoogle Scholar20. KALWINSKYROBERSONDAHL DPG. Clinical relevance of lymphoblast biological features in children with acute lymphoblastic leukemia. J Clin Oncol. 1985;3:477-84. CrossrefMedlineGoogle Scholar21. Third International Workshop on Chromosomes in Leukemia: chromosomal abnormalities and their clinical significance in acute lymphoblastic leukemia. Cancer Res. 1983;43:868-73. MedlineGoogle Scholar22. BRETON-GORIUSVAN HAEKEPRYZWANSKY JDK. Simultaneous detection of membrane markers with monoclonal antibodies and peroxidatic activities in leukaemia: ultrastructural analysis using a new method of fixation preserving the platelet peroxidase. Br J Haematol. 1984;58:447-58. CrossrefMedlineGoogle Scholar23. SCHREEDERPRCHALPARMLEYCARROLLGEWIRTZHOFFMAN MJRAAR. An acute myeloproliferative disorder characterized by myelofibrosis and blast cells that express phenotypic properties associated with multiple hematopoietic lineages. Am J Clin Pathol. 1985;83:114-21. CrossrefMedlineGoogle Scholar This content is PDF only. To continue reading please click on the PDF icon. Author, Article, and Disclosure InformationAffiliations: University of Minnesota Health Sciences Center Minneapolis, Minnesota PreviousarticleNextarticle Advertisement FiguresReferencesRelatedDetails Metrics Cited byPediatric Acute Myeloid Leukemia—Past, Present, and FutureEpigenetic and Genetic Alterations in LeukemiaClinical Utility of Next-Generation Sequencing in Acute Myeloid LeukemiaLymphoma and LeukaemiaAcute myeloid leukemiaHematopoietic stem cell transplantation for de novo acute megakaryocytic leukemia in first complete remission: a retrospective study of the European Group for Blood and Marrow Transplantation (EBMT)Biology, clinical, and hematologic features of acute megakaryoblastic leukemia in childrenBiology and outcome of childhood acute megakaryoblastic leukemia: a single institution's experienceCongenital Acute Megakaryoblastic Leukemia (M7) With Chromosomal t(l;22)(p13;q13) Translocation in a Set of Identical TwinsAcute Megakaryoblastic Leukemia: Importance of Bone Marrow Biopsy in DiagnosisAggressive polychemotherapy for acute myelofibrosisAcute Megakaryocytic Leukemia (M7) in ChildrenAcute Megakaryocytic LeukemiaCytochemistry and Immunocytochemistry in Bone Marrow Examination: Contemporary Techniques for the Diagnosis of Acute Leukemia and Myelodysplastic Syndromes: A Combined ApproachMonosomy 5 in acute megakaryoblastic leukemiaA prospective trial of the treatment of acute megakaryoblastic leukaemiaAcute megakaryocytic leukemia. 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