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Leukemia Research|January 1, 1984
Ingestion rate and glycolytic enzymes in neutrophils of patients with agnogenic osteomyelofibrosis and splenomegalyM T Labro-Bryskier, C Marquetty, E Cramer, et al.Leukemia Research|January 1, 1984
Persistence of the immunoprotective effects of leukemia X fibroblast hybrid cells toward leukemia in histocompatible miceS L Garber, E P Cohen, I ChangLeukemia Research|January 1, 1984
Increased in vitro radioresistance of bone marrow fibroblastic progenitors (CFU-F) from patients with acute non-lymphocytic leukemiaB R Greenberg, F D Wilson, L Woo, et al.Leukemia Research|January 1, 1984
Regulation of splenic CFU-S kinetics after cytosine arabinoside treatment in mice II. In vitro studies: long-range modulators of the splenic CFU-SF Sainteny, D Dumenil, E FrindelLeukemia Research|January 1, 1982
Enzymecytochemical heterogeneity of human chronic T-lymphocytic leukemia as demonstrated by reactivity to dipeptidylaminopeptidase IV (DAP IV; EC 3.4.14.4)A C Feller, M R Parwaresch, H Bartels, et al.Leukemia Research|January 1, 1984
Acute leukemia with two cell populations of lymphoblasts and monoblastsT Ueda, K Kita, D Kagawa, et al.Leukemia Research|January 1, 1984
Glucocorticoid receptor number and intracellular water spaceK JunkerLeukemia Research|August 1, 1995
Molecular study of the interferon genes in chronic myeloid leukemiaI Larripa, I Giere, I Slavutsky, et al.Leukemia Research|August 1, 1995
Nitric oxide modulation of the growth and differentiation of freshly isolated acute non-lymphocytic leukemia cellsP J Shami, J O Moore, J P Gockerman, et al.Leukemia Research|August 1, 1995
Specific nuclear binding of anti-cdc2 on p34cdc2 positive autonomously grown human leukemia cells induces differentiationS Vassiliadis, S Papadogiorgakis, I AthanassakisPageof 688