Diamond-blackfan anemia: in vitro response of erythroid progenitors to the ligand for c-kit. 1991

J L Abkowitz, and K M Sabo, and B Nakamoto, and C A Blau, and F H Martin, and K M Zsebo, and T Papayannopoulou
Department of Medicine, University of Washington, Seattle 98195.

To provide insights into the pathogenesis of Diamond-Blackfan anemia, we examined the in vitro response of erythroid progenitors to the recently isolated ligand for c-kit (stem cell factor, SCF). For these studies, marrow or blood mononuclear cells from 10 Diamond-Blackfan patients were cultured with erythropoietin (Ep), Ep and interleukin-3, Ep and granulocyte-macrophage colony-stimulating factor, or Ep and lymphocyte conditioned media (LCM). These combinations were tested in the presence or absence of SCF. The mean number of cells per erythroid burst increased 5 to 50-fold in cultures containing SCF. Furthermore, many additional erythroid bursts were seen (mean increment 3.2 x baseline values). Although burst-forming unit-erythroid (BFU-E) from all patients responded, there were differences among individuals in the sensitivity of their BFU-E to SCF. In six patients and all control studies, plateau frequencies of erythroid bursts were achieved with less than or equal to 10 ng/mL SCF, whereas in studies from the other four patients, over 50 ng/mL SCF was required. These data invite speculation that the c-kit receptor/ligand axis is involved in the pathogenesis of Diamond-Blackfan anemia. More importantly and regardless of whether the observed patterns of response reflect the primary defect or an epiphenomenon, our data strongly support a therapeutic trial of SCF in patients with Diamond-Blackfan anemia.

UI MeSH Term Description Entries
D007377 Interleukin-3 A multilineage cell growth factor secreted by LYMPHOCYTES; EPITHELIAL CELLS; and ASTROCYTES which stimulates clonal proliferation and differentiation of various types of blood and tissue cells. Burst-Promoting Factor, Erythrocyte,Colony-Stimulating Factor 2 Alpha,Colony-Stimulating Factor, Mast-Cell,Colony-Stimulating Factor, Multipotential,Erythrocyte Burst-Promoting Factor,IL-3,Mast-Cell Colony-Stimulating Factor,Multipotential Colony-Stimulating Factor,P-Cell Stimulating Factor,Eosinophil-Mast Cell Growth-Factor,Hematopoietin-2,Burst Promoting Factor, Erythrocyte,Colony Stimulating Factor, Mast Cell,Colony Stimulating Factor, Multipotential,Eosinophil Mast Cell Growth Factor,Erythrocyte Burst Promoting Factor,Hematopoietin 2,Interleukin 3,Multipotential Colony Stimulating Factor,P Cell Stimulating Factor
D008214 Lymphocytes White blood cells formed in the body's lymphoid tissue. The nucleus is round or ovoid with coarse, irregularly clumped chromatin while the cytoplasm is typically pale blue with azurophilic (if any) granules. Most lymphocytes can be classified as either T or B (with subpopulations of each), or NATURAL KILLER CELLS. Lymphoid Cells,Cell, Lymphoid,Cells, Lymphoid,Lymphocyte,Lymphoid Cell
D008297 Male Males
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
D002478 Cells, Cultured Cells propagated in vitro in special media conducive to their growth. Cultured cells are used to study developmental, morphologic, metabolic, physiologic, and genetic processes, among others. Cultured Cells,Cell, Cultured,Cultured Cell
D002675 Child, Preschool A child between the ages of 2 and 5. Children, Preschool,Preschool Child,Preschool Children
D003114 Colony-Forming Units Assay A cytologic technique for measuring the functional capacity of stem cells by assaying their activity. Clonogenic Cell Assay,Stem Cell Assay,Clonogenic Cell Assays,Colony Forming Units Assays,Colony-Forming Units Assays,Stem Cell Assays,Assay, Clonogenic Cell,Assay, Colony-Forming Units,Assay, Stem Cell,Assays, Clonogenic Cell,Assays, Colony-Forming Units,Assays, Stem Cell,Colony Forming Units Assay
D003470 Culture Media Any liquid or solid preparation made specifically for the growth, storage, or transport of microorganisms or other types of cells. The variety of media that exist allow for the culturing of specific microorganisms and cell types, such as differential media, selective media, test media, and defined media. Solid media consist of liquid media that have been solidified with an agent such as AGAR or GELATIN. Media, Culture
D004921 Erythropoietin Glycoprotein hormone, secreted chiefly by the KIDNEY in the adult and the LIVER in the FETUS, that acts on erythroid stem cells of the BONE MARROW to stimulate proliferation and differentiation.
D005199 Fanconi Anemia Congenital disorder affecting all bone marrow elements, resulting in ANEMIA; LEUKOPENIA; and THROMBOPENIA, and associated with cardiac, renal, and limb malformations as well as dermal pigmentary changes. Spontaneous CHROMOSOME BREAKAGE is a feature of this disease along with predisposition to LEUKEMIA. There are at least 7 complementation groups in Fanconi anemia: FANCA, FANCB, FANCC, FANCD1, FANCD2, FANCE, FANCF, FANCG, and FANCL. (from Online Mendelian Inheritance in Man, http://www.ncbi.nlm.nih.gov/entrez/dispomim.cgi?id Anemia, Fanconi,Fanconi Hypoplastic Anemia,Fanconi Pancytopenia,Fanconi Panmyelopathy,Fanconi's Anemia,Anemia, Fanconi's,Anemias, Fanconi,Fanconi Anemias

Related Publications

J L Abkowitz, and K M Sabo, and B Nakamoto, and C A Blau, and F H Martin, and K M Zsebo, and T Papayannopoulou
May 2002, International journal of hematology,
J L Abkowitz, and K M Sabo, and B Nakamoto, and C A Blau, and F H Martin, and K M Zsebo, and T Papayannopoulou
April 1992, Blood,
J L Abkowitz, and K M Sabo, and B Nakamoto, and C A Blau, and F H Martin, and K M Zsebo, and T Papayannopoulou
July 1975, Orvosi hetilap,
J L Abkowitz, and K M Sabo, and B Nakamoto, and C A Blau, and F H Martin, and K M Zsebo, and T Papayannopoulou
April 2020, The Journal of clinical investigation,
J L Abkowitz, and K M Sabo, and B Nakamoto, and C A Blau, and F H Martin, and K M Zsebo, and T Papayannopoulou
January 1992, Blood,
J L Abkowitz, and K M Sabo, and B Nakamoto, and C A Blau, and F H Martin, and K M Zsebo, and T Papayannopoulou
September 1982, Indian pediatrics,
J L Abkowitz, and K M Sabo, and B Nakamoto, and C A Blau, and F H Martin, and K M Zsebo, and T Papayannopoulou
February 1978, The Journal of clinical investigation,
J L Abkowitz, and K M Sabo, and B Nakamoto, and C A Blau, and F H Martin, and K M Zsebo, and T Papayannopoulou
February 2017, Science translational medicine,
J L Abkowitz, and K M Sabo, and B Nakamoto, and C A Blau, and F H Martin, and K M Zsebo, and T Papayannopoulou
February 1994, Blood,
J L Abkowitz, and K M Sabo, and B Nakamoto, and C A Blau, and F H Martin, and K M Zsebo, and T Papayannopoulou
June 1994, British journal of haematology,
Copied contents to your clipboard!