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Blood|October 1, 1995
Chemokine regulation of human megakaryocytopoiesisA M Gewirtz, J Zhang, J Ratajczak, et al.Leukemia|July 31, 2009
Novel epigenetic mechanisms that control pluripotency and quiescence of adult bone marrow-derived Oct4(+) very small embryonic-like stem cellsD M Shin, E K Zuba-Surma, W Wu, et al.British Journal of Haematology|January 14, 1999
Role of vascular endothelial growth factor (VEGF) and placenta-derived growth factor (PlGF) in regulating human haemopoietic cell growthM Z Ratajczak, J Ratajczak, B Machalinski, et al.Annals of Transplantation|January 1, 1997
An optimization study on unprogrammed cryopreservation of human CD34+ bone marrow cells and their subsequent storage in an -80 degrees C mechanical freezerM Z Ratajczak, J Ratajczak, D A Kregenow, et al.Folia Histochemica Et Cytobiologica|June 2, 2000
Expression, regulation and function of AC133, a putative cell surface marker of primitive human haematopoietic cellsM Majka, J Ratajczak, B Machalinski, et al.British Journal of Haematology|December 12, 2001
Matrix metalloproteinase and tissue inhibitors of metalloproteinase secretion by haematopoietic and stromal precursors and their production in normal and leukaemic long-term marrow culturesL A Marquez-Curtis, A Dobrowsky, J Montaño, et al.British Journal of Haematology|June 1, 1996
Effect of basic (FGF-2) and acidic (FGF-1) fibroblast growth factors on early haemopoietic cell developmentM Z Ratajczak, J Ratajczak, M Skorska, et al.British Journal of Haematology|July 1, 1997
Recombinant human thrombopoietin (TPO) stimulates erythropoiesis by inhibiting erythroid progenitor cell apoptosisM Z Ratajczak, J Ratajczak, W Marlicz, et al.Leukemia|December 25, 2009
Mobilization studies in complement-deficient mice reveal that optimal AMD3100 mobilization of hematopoietic stem cells depends on complement cascade activation by AMD3100-stimulated granulocytesH M Lee, M Wysoczynski, R Liu, et al.Experimental Hematology|January 9, 2001
The limited infectability by R5 HIV of CD34(+) cells from thymus, cord, and peripheral blood and bone marrow is explained by their ability to produce beta-chemokinesM Majka, T Rozmyslowicz, J Ratajczak, et al.Pageof 11