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Oncogene
|
January 19, 1995
Ligands for the receptor tyrosine kinases hek and elk: isolation of cDNAs encoding a family of proteins
C J Kozlosky, E Maraskovsky, J T McGrew, et al.
Nature
|
November 21, 1997
A homologue of the TNF receptor and its ligand enhance T-cell growth and dendritic-cell function
D M Anderson, E Maraskovsky, W L Billingsley, et al.
Journal of Immunology (Baltimore, Md. : 1950)
|
June 22, 2000
Polyethylene glycol-modified GM-CSF expands CD11b(high)CD11c(high) but notCD11b(low)CD11c(high) murine dendritic cells in vivo: a comparative analysis with Flt3 ligand
E Daro, B Pulendran, K Brasel, et al.
Cellular Immunology
|
August 1, 1997
FLT3 ligand induces the generation of functionally active dendritic cells in mice
M R Shurin, P P Pandharipande, T D Zorina, et al.
Molecular Immunology
|
November 1, 1995
Isolation of LERK-5: a ligand of the eph-related receptor tyrosine kinases
D P Cerretti, T Vanden Bos, N Nelson, et al.
British Journal of Cancer
|
April 16, 2002
Cancer testis antigens expression in mesothelioma: role of DNA methylation and bioimmunotherapeutic implications
L Sigalotti, S Coral, M Altomonte, et al.
Clinical & Developmental Immunology
|
September 26, 2013
Ex vivo restimulation of human PBMC expands a CD3+CD4-CD8- γδ+ T cell population that can confound the evaluation of CD4 and CD8 T cell responses to vaccination
B J Sedgmen, L Papalia, L Wang, et al.
The Journal of Experimental Medicine
|
November 1, 1994
Early lymphocyte expansion is severely impaired in interleukin 7 receptor-deficient mice
J J Peschon, P J Morrissey, K H Grabstein, et al.
Blood
|
May 29, 2000
Mice lacking flt3 ligand have deficient hematopoiesis affecting hematopoietic progenitor cells, dendritic cells, and natural killer cells
H J McKenna, K L Stocking, R E Miller, et al.
Preparative Biochemistry & Biotechnology
|
May 11, 2005
Recombinant NY-ESO-1 cancer antigen: production and purification under cGMP conditions
R Murphy, S Green, G Ritter, et al.
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of 4
Search research articles
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Showing results (31-40 of 40) with videos related to
Sort By:
Page
of 4
You have reached the last page of results.
This site can display upto 40 results.
Oncogene
|
January 19, 1995
Ligands for the receptor tyrosine kinases hek and elk: isolation of cDNAs encoding a family of proteins
C J Kozlosky, E Maraskovsky, J T McGrew, et al.
Nature
|
November 21, 1997
A homologue of the TNF receptor and its ligand enhance T-cell growth and dendritic-cell function
D M Anderson, E Maraskovsky, W L Billingsley, et al.
Journal of Immunology (Baltimore, Md. : 1950)
|
June 22, 2000
Polyethylene glycol-modified GM-CSF expands CD11b(high)CD11c(high) but notCD11b(low)CD11c(high) murine dendritic cells in vivo: a comparative analysis with Flt3 ligand
E Daro, B Pulendran, K Brasel, et al.
Cellular Immunology
|
August 1, 1997
FLT3 ligand induces the generation of functionally active dendritic cells in mice
M R Shurin, P P Pandharipande, T D Zorina, et al.
Molecular Immunology
|
November 1, 1995
Isolation of LERK-5: a ligand of the eph-related receptor tyrosine kinases
D P Cerretti, T Vanden Bos, N Nelson, et al.
British Journal of Cancer
|
April 16, 2002
Cancer testis antigens expression in mesothelioma: role of DNA methylation and bioimmunotherapeutic implications
L Sigalotti, S Coral, M Altomonte, et al.
Clinical & Developmental Immunology
|
September 26, 2013
Ex vivo restimulation of human PBMC expands a CD3+CD4-CD8- γδ+ T cell population that can confound the evaluation of CD4 and CD8 T cell responses to vaccination
B J Sedgmen, L Papalia, L Wang, et al.
The Journal of Experimental Medicine
|
November 1, 1994
Early lymphocyte expansion is severely impaired in interleukin 7 receptor-deficient mice
J J Peschon, P J Morrissey, K H Grabstein, et al.
Blood
|
May 29, 2000
Mice lacking flt3 ligand have deficient hematopoiesis affecting hematopoietic progenitor cells, dendritic cells, and natural killer cells
H J McKenna, K L Stocking, R E Miller, et al.
Preparative Biochemistry & Biotechnology
|
May 11, 2005
Recombinant NY-ESO-1 cancer antigen: production and purification under cGMP conditions
R Murphy, S Green, G Ritter, et al.
Page
of 4