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Blood|September 9, 2000
Phosphatase inhibition promotes antiapoptotic but not proliferative signaling pathways in erythropoietin-dependent HCD57 cellsA E Lawson, H Bao, A Wickrema, et al.Blood|May 26, 1999
Protein kinase B (c-Akt), phosphatidylinositol 3-kinase, and STAT5 are activated by erythropoietin (EPO) in HCD57 erythroid cells but are constitutively active in an EPO-independent, apoptosis-resistant subclone (HCD57-SREI cells)H Bao, S M Jacobs-Helber, A E Lawson, et al.Blood|October 15, 1993
Survival or death of individual proerythroblasts results from differing erythropoietin sensitivities: a mechanism for controlled rates of erythrocyte productionL L Kelley, M J Koury, M C Bondurant, et al.Blood|July 1, 1995
Purified CD34+ Lin- Thy+ stem cells do not contain clonal myeloma cellsY Gazitt, C C Reading, R Hoffman, et al.Experimental Hematology|July 31, 1999
CrkL and CrkII participate in the generation of the growth inhibitory effects of interferons on primary hematopoietic progenitorsL C Platanias, S Uddin, E Bruno, et al.Experimental Hematology|July 2, 1999
Defective expression of the SHP-1 phosphatase in polycythemia veraA Wickrema, F Chen, F Namin, et al.Bone Marrow Transplantation|May 7, 2003
Low incidence of CMV viremia and disease after allogeneic peripheral blood stem cell transplantation. Role of pretransplant ganciclovir and post-transplant acyclovirA Verma, S Devine, M Morrow, et al.Bone Marrow Transplantation|August 28, 2003
Regimen-related toxicity after fludarabine-melphalan conditioning: a prospective study of 31 patients with hematologic malignanciesK Van Besien, S Devine, A Wickrema, et al.The Journal of Biological Chemistry|August 24, 1999
Engagement of Gab1 and Gab2 in erythropoietin signalingA Wickrema, S Uddin, A Sharma, et al.Bone Marrow Transplantation|October 19, 2001
Fludarabine and melphalan-based conditioning for patients with advanced hematological malignancies relapsing after a previous hematopoietic stem cell transplantS M Devine, R Sanborn, E Jessop, et al.Pageof 3