[Myeloid/natural killer cell precursor acute leukemia diagnosed by cell marker analysis]. 2013

Rika Miura, and Mayumi Yoshimi, and Yuji Kikuchi, and Tsuyoshi Takahashi
Department of Medicine, Mitsui Memorial Hospital.

We report a case of myeloid/natural killer cell precursor acute leukemia. A 68-year-old man was diagnosed as having lymphoma in his neck, and was referred to our department for further examination and treatment. After admission, blastoid-cells appeared and increased rapidly in his peripheral blood. Cell marker analysis revealed that the blastoid-cells expressed CD7, CD56, CD33, and CD34. He was then diagnosed with myeloid/natural killer cell precursor leukemia. This form of leukemia was recently established as a distinct disease entity. Further clinicopathological evaluation and the establishment of treatment are necessary.

UI MeSH Term Description Entries
D007694 Killer Cells, Natural Bone marrow-derived lymphocytes that possess cytotoxic properties, classically directed against transformed and virus-infected cells. Unlike T CELLS; and B CELLS; NK CELLS are not antigen specific. The cytotoxicity of natural killer cells is determined by the collective signaling of an array of inhibitory and stimulatory CELL SURFACE RECEPTORS. A subset of T-LYMPHOCYTES referred to as NATURAL KILLER T CELLS shares some of the properties of this cell type. NK Cells,Natural Killer Cells,Cell, NK,Cell, Natural Killer,Cells, NK,Cells, Natural Killer,Killer Cell, Natural,NK Cell,Natural Killer Cell
D008297 Male Males
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000368 Aged A person 65 years of age or older. For a person older than 79 years, AGED, 80 AND OVER is available. Elderly
D013234 Stem Cells Relatively undifferentiated cells that retain the ability to divide and proliferate throughout postnatal life to provide progenitor cells that can differentiate into specialized cells. Colony-Forming Units,Mother Cells,Progenitor Cells,Colony-Forming Unit,Cell, Mother,Cell, Progenitor,Cell, Stem,Cells, Mother,Cells, Progenitor,Cells, Stem,Colony Forming Unit,Colony Forming Units,Mother Cell,Progenitor Cell,Stem Cell
D015470 Leukemia, Myeloid, Acute Clonal expansion of myeloid blasts in bone marrow, blood, and other tissue. Myeloid leukemias develop from changes in cells that normally produce NEUTROPHILS; BASOPHILS; EOSINOPHILS; and MONOCYTES. Leukemia, Myelogenous, Acute,Leukemia, Nonlymphocytic, Acute,Myeloid Leukemia, Acute,Nonlymphocytic Leukemia, Acute,ANLL,Acute Myelogenous Leukemia,Acute Myeloid Leukemia,Acute Myeloid Leukemia with Maturation,Acute Myeloid Leukemia without Maturation,Leukemia, Acute Myelogenous,Leukemia, Acute Myeloid,Leukemia, Myeloblastic, Acute,Leukemia, Myelocytic, Acute,Leukemia, Myeloid, Acute, M1,Leukemia, Myeloid, Acute, M2,Leukemia, Nonlymphoblastic, Acute,Myeloblastic Leukemia, Acute,Myelocytic Leukemia, Acute,Myelogenous Leukemia, Acute,Myeloid Leukemia, Acute, M1,Myeloid Leukemia, Acute, M2,Nonlymphoblastic Leukemia, Acute,Acute Myeloblastic Leukemia,Acute Myeloblastic Leukemias,Acute Myelocytic Leukemia,Acute Myelocytic Leukemias,Acute Myelogenous Leukemias,Acute Myeloid Leukemias,Acute Nonlymphoblastic Leukemia,Acute Nonlymphoblastic Leukemias,Acute Nonlymphocytic Leukemia,Acute Nonlymphocytic Leukemias,Leukemia, Acute Myeloblastic,Leukemia, Acute Myelocytic,Leukemia, Acute Nonlymphoblastic,Leukemia, Acute Nonlymphocytic,Leukemias, Acute Myeloblastic,Leukemias, Acute Myelocytic,Leukemias, Acute Myelogenous,Leukemias, Acute Myeloid,Leukemias, Acute Nonlymphoblastic,Leukemias, Acute Nonlymphocytic,Myeloblastic Leukemias, Acute,Myelocytic Leukemias, Acute,Myelogenous Leukemias, Acute,Myeloid Leukemias, Acute,Nonlymphoblastic Leukemias, Acute,Nonlymphocytic Leukemias, Acute
D015703 Antigens, CD Differentiation antigens residing on mammalian leukocytes. CD stands for cluster of differentiation, which refers to groups of monoclonal antibodies that show similar reactivity with certain subpopulations of antigens of a particular lineage or differentiation stage. The subpopulations of antigens are also known by the same CD designation. CD Antigen,Cluster of Differentiation Antigen,Cluster of Differentiation Marker,Differentiation Antigens, Leukocyte, Human,Leukocyte Differentiation Antigens, Human,Cluster of Differentiation Antigens,Cluster of Differentiation Markers,Antigen Cluster, Differentiation,Antigen, CD,CD Antigens,Differentiation Antigen Cluster,Differentiation Marker Cluster,Marker Cluster, Differentiation
D016130 Immunophenotyping Process of classifying cells of the immune system based on structural and functional differences. The process is commonly used to analyze and sort T-lymphocytes into subsets based on CD antigens by the technique of flow cytometry. Lymphocyte Immunophenotyping,Lymphocyte Subtyping,Immunologic Subtyping,Immunologic Subtypings,Lymphocyte Phenotyping,Subtyping, Immunologic,Subtypings, Immunologic,Immunophenotyping, Lymphocyte,Immunophenotypings,Immunophenotypings, Lymphocyte,Lymphocyte Immunophenotypings,Lymphocyte Phenotypings,Lymphocyte Subtypings,Phenotyping, Lymphocyte,Phenotypings, Lymphocyte,Subtyping, Lymphocyte,Subtypings, Lymphocyte
D022423 Myeloid Cells The classes of BONE MARROW-derived blood cells in the monocytic series (MONOCYTES and their precursors) and granulocytic series (GRANULOCYTES and their precursors). Cell, Myeloid,Cells, Myeloid,Myeloid Cell

Related Publications

Rika Miura, and Mayumi Yoshimi, and Yuji Kikuchi, and Tsuyoshi Takahashi
April 2014, Zhongguo shi yan xue ye xue za zhi,
Rika Miura, and Mayumi Yoshimi, and Yuji Kikuchi, and Tsuyoshi Takahashi
December 2005, Cancer genetics and cytogenetics,
Rika Miura, and Mayumi Yoshimi, and Yuji Kikuchi, and Tsuyoshi Takahashi
July 1999, Human pathology,
Rika Miura, and Mayumi Yoshimi, and Yuji Kikuchi, and Tsuyoshi Takahashi
August 2002, Nihon Naika Gakkai zasshi. The Journal of the Japanese Society of Internal Medicine,
Rika Miura, and Mayumi Yoshimi, and Yuji Kikuchi, and Tsuyoshi Takahashi
February 2001, Leukemia research,
Rika Miura, and Mayumi Yoshimi, and Yuji Kikuchi, and Tsuyoshi Takahashi
August 2003, International journal of hematology,
Rika Miura, and Mayumi Yoshimi, and Yuji Kikuchi, and Tsuyoshi Takahashi
September 2008, Medicina clinica,
Rika Miura, and Mayumi Yoshimi, and Yuji Kikuchi, and Tsuyoshi Takahashi
December 2023, Science advances,
Rika Miura, and Mayumi Yoshimi, and Yuji Kikuchi, and Tsuyoshi Takahashi
July 1999, Leukemia research,
Rika Miura, and Mayumi Yoshimi, and Yuji Kikuchi, and Tsuyoshi Takahashi
January 2024, International journal of hematology,
Copied contents to your clipboard!