Faggot cells in acute myeloid leukemia with t(7;11)(p15;p15) and NUP98-HOXA9 fusion. 2021

Hiroto Yanagisawa, and Shuichi Mizuta, and Hiroshi Kawabata, and Shino Fujimoto, and Tomoyuki Sakai, and Haruka Iwao-Kawanami, and Takafumi Kawanami, and Kazunori Yamada, and Toshihiro Fukushima, and Katsunori Kyoda, and Yasufumi Masaki
Department of Hematology and Immunology, Kanazawa Medical University, 1-1 Daigaku, Uchinada, Ishikawa-ken, 920-0293, Japan.

UI MeSH Term Description Entries
D008297 Male Males
D008875 Middle Aged An adult aged 45 - 64 years. Middle Age
D001853 Bone Marrow The soft tissue filling the cavities of bones. Bone marrow exists in two types, yellow and red. Yellow marrow is found in the large cavities of large bones and consists mostly of fat cells and a few primitive blood cells. Red marrow is a hematopoietic tissue and is the site of production of erythrocytes and granular leukocytes. Bone marrow is made up of a framework of connective tissue containing branching fibers with the frame being filled with marrow cells. Marrow,Red Marrow,Yellow Marrow,Marrow, Bone,Marrow, Red,Marrow, Yellow
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D014178 Translocation, Genetic A type of chromosome aberration characterized by CHROMOSOME BREAKAGE and transfer of the broken-off portion to another location, often to a different chromosome. Chromosomal Translocation,Translocation, Chromosomal,Chromosomal Translocations,Genetic Translocation,Genetic Translocations,Translocations, Chromosomal,Translocations, Genetic
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
D015514 Oncogene Proteins, Fusion The GENETIC TRANSLATION products of the fusion between an ONCOGENE and another gene. The latter may be of viral or cellular origin. Chimeric Oncogene Proteins,Chimeric Proteins, Oncogene,Fusion Proteins, Oncogene,Oncogene Fusion Proteins,Oncogene Proteins, Chimeric,Fusion Oncogene Proteins,Oncogene Chimeric Proteins,Proteins, Chimeric Oncogene,Proteins, Fusion Oncogene,Proteins, Oncogene Chimeric,Proteins, Oncogene Fusion
D018398 Homeodomain Proteins Proteins encoded by homeobox genes (GENES, HOMEOBOX) that exhibit structural similarity to certain prokaryotic and eukaryotic DNA-binding proteins. Homeodomain proteins are involved in the control of gene expression during morphogenesis and development (GENE EXPRESSION REGULATION, DEVELOPMENTAL). Homeo Domain Protein,Homeobox Protein,Homeobox Proteins,Homeodomain Protein,Homeoprotein,Homeoproteins,Homeotic Protein,Homeo Domain Proteins,Homeotic Proteins,Domain Protein, Homeo,Protein, Homeo Domain,Protein, Homeobox,Protein, Homeodomain,Protein, Homeotic,Proteins, Homeo Domain,Proteins, Homeobox,Proteins, Homeodomain,Proteins, Homeotic
D028861 Nuclear Pore Complex Proteins Proteins that form the structure of the NUCLEAR PORE. They are involved in active, facilitated and passive transport of molecules in and out of the CELL NUCLEUS. Nucleoporins,Nucleoporin

Related Publications

Hiroto Yanagisawa, and Shuichi Mizuta, and Hiroshi Kawabata, and Shino Fujimoto, and Tomoyuki Sakai, and Haruka Iwao-Kawanami, and Takafumi Kawanami, and Kazunori Yamada, and Toshihiro Fukushima, and Katsunori Kyoda, and Yasufumi Masaki
November 1999, Cancer genetics and cytogenetics,
Hiroto Yanagisawa, and Shuichi Mizuta, and Hiroshi Kawabata, and Shino Fujimoto, and Tomoyuki Sakai, and Haruka Iwao-Kawanami, and Takafumi Kawanami, and Kazunori Yamada, and Toshihiro Fukushima, and Katsunori Kyoda, and Yasufumi Masaki
February 2022, Zhonghua xue ye xue za zhi = Zhonghua xueyexue zazhi,
Hiroto Yanagisawa, and Shuichi Mizuta, and Hiroshi Kawabata, and Shino Fujimoto, and Tomoyuki Sakai, and Haruka Iwao-Kawanami, and Takafumi Kawanami, and Kazunori Yamada, and Toshihiro Fukushima, and Katsunori Kyoda, and Yasufumi Masaki
May 2009, American journal of hematology,
Hiroto Yanagisawa, and Shuichi Mizuta, and Hiroshi Kawabata, and Shino Fujimoto, and Tomoyuki Sakai, and Haruka Iwao-Kawanami, and Takafumi Kawanami, and Kazunori Yamada, and Toshihiro Fukushima, and Katsunori Kyoda, and Yasufumi Masaki
December 1999, British journal of haematology,
Hiroto Yanagisawa, and Shuichi Mizuta, and Hiroshi Kawabata, and Shino Fujimoto, and Tomoyuki Sakai, and Haruka Iwao-Kawanami, and Takafumi Kawanami, and Kazunori Yamada, and Toshihiro Fukushima, and Katsunori Kyoda, and Yasufumi Masaki
February 1996, Nature genetics,
Hiroto Yanagisawa, and Shuichi Mizuta, and Hiroshi Kawabata, and Shino Fujimoto, and Tomoyuki Sakai, and Haruka Iwao-Kawanami, and Takafumi Kawanami, and Kazunori Yamada, and Toshihiro Fukushima, and Katsunori Kyoda, and Yasufumi Masaki
August 2002, Genes, chromosomes & cancer,
Hiroto Yanagisawa, and Shuichi Mizuta, and Hiroshi Kawabata, and Shino Fujimoto, and Tomoyuki Sakai, and Haruka Iwao-Kawanami, and Takafumi Kawanami, and Kazunori Yamada, and Toshihiro Fukushima, and Katsunori Kyoda, and Yasufumi Masaki
February 1996, Nature genetics,
Hiroto Yanagisawa, and Shuichi Mizuta, and Hiroshi Kawabata, and Shino Fujimoto, and Tomoyuki Sakai, and Haruka Iwao-Kawanami, and Takafumi Kawanami, and Kazunori Yamada, and Toshihiro Fukushima, and Katsunori Kyoda, and Yasufumi Masaki
August 1987, [Rinsho ketsueki] The Japanese journal of clinical hematology,
Hiroto Yanagisawa, and Shuichi Mizuta, and Hiroshi Kawabata, and Shino Fujimoto, and Tomoyuki Sakai, and Haruka Iwao-Kawanami, and Takafumi Kawanami, and Kazunori Yamada, and Toshihiro Fukushima, and Katsunori Kyoda, and Yasufumi Masaki
September 2008, Haematologica,
Hiroto Yanagisawa, and Shuichi Mizuta, and Hiroshi Kawabata, and Shino Fujimoto, and Tomoyuki Sakai, and Haruka Iwao-Kawanami, and Takafumi Kawanami, and Kazunori Yamada, and Toshihiro Fukushima, and Katsunori Kyoda, and Yasufumi Masaki
January 2002, British journal of haematology,
Copied contents to your clipboard!