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C E Dunbar

Showing results (31-40 of 70) with videos related to

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Human Gene Therapy|September 6, 2001
In vivo persistence of retrovirally transduced murine long-term repopulating cells is not limited by expression of foreign gene products in the fully or minimally myeloablated settingE Kang, N Giri, T Wu, et al.
Human Gene Therapy|August 14, 1999
Retroviral marking and transplantation of rhesus hematopoietic cells by nonmyeloablative conditioningR D Huhn, J F Tisdale, B Agricola, et al.
Molecular and Cellular Biology|February 1, 1989
Retrovirus-mediated transfer and expression of the interleukin-3 gene in mouse hematopoietic cells result in a myeloproliferative disorderP M Wong, S W Chung, C E Dunbar, et al.
Clinical and Experimental Immunology|August 22, 2003
T cell receptor VB repertoire diversity in patients with immune thrombocytopenia following splenectomyP F Fogarty, M E Rick, W Zeng, et al.
Journal of Neuropathology and Experimental Neurology|May 20, 1999
CNS interleukin-3 (IL-3) expression and neurological syndrome in antisense-IL-3 transgenic miceY Sugita, B Zhao, P Shankar, et al.
The Journal of Clinical Investigation|August 8, 2001
Avoidance of stimulation improves engraftment of cultured and retrovirally transduced hematopoietic cells in primatesM Takatoku, S Sellers, B A Agricola, et al.
Transfusion|November 29, 2001
Assessment of rapid remobilization intervals with G-CSF and SCF in murine and rhesus macaque modelsP A Shi, G J Pomper, M E Metzger, et al.
Human Gene Therapy|December 20, 2002
Analysis of origin and optimization of expansion and transduction of circulating peripheral blood endothelial progenitor cells in the rhesus macaque modelJ Hu, M Takatoku, S E Sellers, et al.
Blood|August 8, 1998
Ex vivo expansion of genetically marked rhesus peripheral blood progenitor cells results in diminished long-term repopulating abilityJ F Tisdale, Y Hanazono, S E Sellers, et al.
Blood|May 15, 1996
Human thrombopoietin levels are high when thrombocytopenia is due to megakaryocyte deficiency and low when due to increased platelet destructionR V Emmons, D M Reid, R L Cohen, et al.
Pageof 7

Showing results (31-40 of 70) with videos related to

Sort By:
Pageof 7
Human Gene Therapy|September 6, 2001
In vivo persistence of retrovirally transduced murine long-term repopulating cells is not limited by expression of foreign gene products in the fully or minimally myeloablated settingE Kang, N Giri, T Wu, et al.
Human Gene Therapy|August 14, 1999
Retroviral marking and transplantation of rhesus hematopoietic cells by nonmyeloablative conditioningR D Huhn, J F Tisdale, B Agricola, et al.
Molecular and Cellular Biology|February 1, 1989
Retrovirus-mediated transfer and expression of the interleukin-3 gene in mouse hematopoietic cells result in a myeloproliferative disorderP M Wong, S W Chung, C E Dunbar, et al.
Clinical and Experimental Immunology|August 22, 2003
T cell receptor VB repertoire diversity in patients with immune thrombocytopenia following splenectomyP F Fogarty, M E Rick, W Zeng, et al.
Journal of Neuropathology and Experimental Neurology|May 20, 1999
CNS interleukin-3 (IL-3) expression and neurological syndrome in antisense-IL-3 transgenic miceY Sugita, B Zhao, P Shankar, et al.
The Journal of Clinical Investigation|August 8, 2001
Avoidance of stimulation improves engraftment of cultured and retrovirally transduced hematopoietic cells in primatesM Takatoku, S Sellers, B A Agricola, et al.
Transfusion|November 29, 2001
Assessment of rapid remobilization intervals with G-CSF and SCF in murine and rhesus macaque modelsP A Shi, G J Pomper, M E Metzger, et al.
Human Gene Therapy|December 20, 2002
Analysis of origin and optimization of expansion and transduction of circulating peripheral blood endothelial progenitor cells in the rhesus macaque modelJ Hu, M Takatoku, S E Sellers, et al.
Blood|August 8, 1998
Ex vivo expansion of genetically marked rhesus peripheral blood progenitor cells results in diminished long-term repopulating abilityJ F Tisdale, Y Hanazono, S E Sellers, et al.
Blood|May 15, 1996
Human thrombopoietin levels are high when thrombocytopenia is due to megakaryocyte deficiency and low when due to increased platelet destructionR V Emmons, D M Reid, R L Cohen, et al.
Pageof 7