Functional changes in human leukemic cell line HL-60. A model for myeloid differentiation
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[1] B. Zakhireh,et al. Development of Oxidase activity by human bone marrow granulocytes. , 1979, Blood.
[2] P. Newburger,et al. Constitutive and inducible granulocyte-macrophage functions in mouse, rat, and human myeloid leukemia-derived continuous tissue culture lines. , 1978, Cancer research.
[3] L. Sachs. Control of normal cell differentiation and the phenotypic reversion of malignancy in myeloid leukaemia , 1978, Nature.
[4] R. Bennett,et al. Lactoferrin Content of Peripheral Blood Cells , 1978, British journal of haematology.
[5] H. Koeffler,et al. Acute myelogenous leukemia: a human cell line responsive to colony-stimulating activity. , 1978, Science.
[6] S. Collins,et al. Terminal differentiation of human promyelocytic leukemia cells induced by dimethyl sulfoxide and other polar compounds. , 1978, Proceedings of the National Academy of Sciences of the United States of America.
[7] H. Cohen,et al. Superoxide production by digitonin-stimulated guinea pig granulocytes. The effects of N-ethyl maleimide, divalent cations; and glycolytic and mitochondrial inhibitors on the activation of the superoxide generating system. , 1978, The Journal of clinical investigation.
[8] H. Cohen,et al. Superoxide generation by digitonin-stimulated guinea pig granulocytes. A basis for a continuous assay for monitoring superoxide production and for the study of the activation of the generating system. , 1978, The Journal of clinical investigation.
[9] K. Pryzwansky,et al. Immunocytochemical identification of azurophilic and specific granule markers in the giant granules of Chediak-Higashi neutrophils. , 1978, The New England journal of medicine.
[10] S. Collins,et al. Continuous growth and differentiation of human myeloid leukaemic cells in suspension culture , 1977, Nature.
[11] J. Spitznagel. Bactericidal mechanisms of the granulocyte. , 1977, Progress in clinical and biological research.
[12] Ernest Beutler,et al. Red Cell Metabolism: A Manual of Biochemical Methods , 1975 .
[13] M. Baggiolini,et al. BIOCHEMICAL AND MORPHOLOGICAL CHARACTERIZATION OF AZUROPHIL AND SPECIFIC GRANULES OF HUMAN NEUTROPHILIC POLYMORPHONUCLEAR LEUKOCYTES , 1974, The Journal of cell biology.
[14] M. Leffell,et al. Character of azurophil and specific granules purified from human polymorphonuclear leukocytes. , 1974, Laboratory investigation; a journal of technical methods and pathology.
[15] T. Stossel,et al. Functional Immaturity of Bone Marrow Bands and Polymorphonuclear Leucocytes , 1974, British journal of haematology.
[16] T. Stossel. Quantitative studies of phagocytosis. Kinetic effects of cations and heat-labile opsonin. , 1973 .
[17] T. Stossel,et al. SERUM-DEPENDENT PHAGOCYTOSIS OF PARAFFIN OIL EMULSIFIED WITH BACTERIAL LIPOPOLYSACCHARIDE , 1973, The Journal of experimental medicine.
[18] T. Stossel,et al. Phagocytosis in chronic granulomatous disease and the Chediak-Higashi syndrome. , 1972, The New England journal of medicine.
[19] W. Scher,et al. Hemoglobin synthesis in murine virus-induced leukemic cells in vitro: stimulation of erythroid differentiation by dimethyl sulfoxide. , 1971, Proceedings of the National Academy of Sciences of the United States of America.
[20] F. Murad,et al. Regulation of glycogen metabolism in polymorphonuclear leukocytes. , 1970, The Journal of biological chemistry.
[21] V. Massey. The microestimation of succinate and the extinction coefficient of cytochrome c. , 1959, Biochimica et biophysica acta.
[22] D. Shugar. The measurement of lysozyme activity and the ultra-violet inactivation of lysozyme. , 1952, Biochimica et biophysica acta.