Literature DB >> 3663939

Minimally differentiated acute nonlymphocytic leukemia: a distinct entity.

E J Lee1, A Pollak, R D Leavitt, J R Testa, C A Schiffer.   

Abstract

Ten of 136 consecutive adult patients with previously untreated acute leukemia had morphologically undifferentiated leukemia by light microscopy. Leukemic cells from these patients were characterized by agranular cytoplasm, negative histochemical staining with sudan black (SB) and nonspecific esterase, and absent lymphoid cell surface markers and therefore were not classifiable according to the French-American-British (FAB) system. Electron microscopy with myeloperoxidase (MPO) staining revealed the presence of peroxidase positive cytoplasmic granules and endoplasmic reticulum in eight of the nine patients studied. Cells from the patient who was negative for MPO were also negative for platelet peroxidase. A series of monoclonal antibodies to myeloid antigens also revealed myeloid features with all patients having at least one myeloid differentiation antigen present on the surface of their cells. Common acute lymphoblastic leukemia (ALL) antigen was absent in the nine patients tested. Cytogenetic analysis of blast cells was abnormal in seven patients on whom adequately banded chromosomes were obtained although there were no consistent abnormalities. No patient had a Ph1 chromosome. Only two of the ten patients achieved a complete remission. Morphologically undifferentiated leukemia may have myeloid features when studied by transmission electron microscopy or with monoclonal antibodies for cell surface markers. Such studies should be performed when the leukemia cannot be classified using either light microscopy or lymphoid cell surface markers. Such patients infrequently achieve remission with standard therapy and constitute a distinct entity.

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Year:  1987        PMID: 3663939

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  18 in total

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2.  Ring chromosome 18 abnormality in acute myelogenous leukemia: the clinical dilemma.

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3.  Routine immunophenotyping of acute leukemias.

Authors:  W D Ludwig; E Thiel
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Review 4.  The diagnosis of acute leukemia with undifferentiated or minimally differentiated blasts.

Authors:  M B van't Veer
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5.  Clinical Utility of Next-Generation Sequencing in Acute Myeloid Leukemia.

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6.  Association of a leukemic stem cell gene expression signature with clinical outcomes in acute myeloid leukemia.

Authors:  Andrew J Gentles; Sylvia K Plevritis; Ravindra Majeti; Ash A Alizadeh
Journal:  JAMA       Date:  2010-12-22       Impact factor: 56.272

7.  Acute myeloid leukemia with MYC rearrangement and JAK2 V617F mutation.

Authors:  Maro Ohanian; Carlos Bueso-Ramos; Chi Young Ok; Pei Lin; Keyur Patel; Mona Lisa Alattar; Joseph D Khoury; Uri Rozovski; Zeev Estrov; Yang O Huh; Jorge Cortes; Lynne V Abruzzo
Journal:  Cancer Genet       Date:  2015-06-25

8.  New recurrent balanced translocations in acute myeloid leukemia and myelodysplastic syndromes: cancer and leukemia group B 8461.

Authors:  Alison Walker; Krzysztof Mrózek; Jessica Kohlschmidt; Kathleen W Rao; Mark J Pettenati; Lisa J Sterling; Guido Marcucci; Andrew J Carroll; Clara D Bloomfield
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9.  Electron microscopy: a contribution to further classification of acute unclassifiable childhood leukemia.

Authors:  E R van Wering; P Brederoo; J H van Dijk-de Leeuw; J van der Meulen; M B van 't Veer
Journal:  Blut       Date:  1990-05

10.  Prognostic significance of CD7+CD56+ phenotype and chromosome 5 abnormalities for acute myeloid leukemia M0.

Authors:  Ritsuro Suzuki; Makoto Murata; Masahiro Kami; Shigeki Ohtake; Norio Asou; Yoshihisa Kodera; Masao Tomonaga; Yasufumi Masaki; Shuya Kusumoto; Jin Takeuchi; Shin Matsuda; Hisamaru Hirai; m Seiichi Yorimitsu; Nobuyuki Hamajima; Masao Seto; Masanori Shimoyama; Ryuzo Ohno; Yasuo Morishima; Shigeo Nakamura
Journal:  Int J Hematol       Date:  2003-06       Impact factor: 2.490

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