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M W Steward

Showing results (11-20 of 134) with videos related to

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Clinical and Experimental Immunology|August 1, 1989
Experimental zinc deficiency: effects on cellular responses and the affinity of humoral antibodyK Moulder, M W Steward
Parasite Immunology|January 1, 1985
Circulating antibody-antigen complexes following Trypanosoma musculi infection in mice genetically selected to produce high or low affinity antibodyJ R Pattison, M W Steward
Clinical and Experimental Immunology|December 1, 1989
Antibody affinity maturation: the role of CD8+ cellsG P Holland, M W Steward
Combinatorial Chemistry & High Throughput Screening|February 28, 2002
Mimotopes of viral antigens and biologically important molecules as candidate vaccines and potential immunotherapeuticsC D Partidos, M W Steward
Clinical and Experimental Immunology|November 1, 1976
Changes in immunoglobulin class and subclass of anti-DNA antibodies with increasing age in N/ZBW F1 hybrid miceM W Steward, F C Hay
Medical Laboratory Sciences|October 1, 1985
The potential of synthetic peptides for vaccinesM W Steward, C R Howard
Journal of Immunological Methods|April 22, 1985
The importance of antibody affinity in the performance of immunoassays for antibodyM W Steward, A M Lew
Journal of Immunological Methods|April 25, 1991
The influence of epitope density on the estimation of the affinity of antibody for complex antigensG P Holland, M W Steward
Immunology|January 1, 1977
The effect of immunological adjuvants on the relative affinity of anti-protein antibodiesR E Petty, M W Steward
Annals of the Rheumatic Diseases|February 1, 1977
Relationship of antibody affinity to onset of immune complex disease in New Zealand miceR E Petty, M W Steward
Pageof 14

Showing results (11-20 of 134) with videos related to

Sort By:
Pageof 14
Clinical and Experimental Immunology|August 1, 1989
Experimental zinc deficiency: effects on cellular responses and the affinity of humoral antibodyK Moulder, M W Steward
Parasite Immunology|January 1, 1985
Circulating antibody-antigen complexes following Trypanosoma musculi infection in mice genetically selected to produce high or low affinity antibodyJ R Pattison, M W Steward
Clinical and Experimental Immunology|December 1, 1989
Antibody affinity maturation: the role of CD8+ cellsG P Holland, M W Steward
Combinatorial Chemistry & High Throughput Screening|February 28, 2002
Mimotopes of viral antigens and biologically important molecules as candidate vaccines and potential immunotherapeuticsC D Partidos, M W Steward
Clinical and Experimental Immunology|November 1, 1976
Changes in immunoglobulin class and subclass of anti-DNA antibodies with increasing age in N/ZBW F1 hybrid miceM W Steward, F C Hay
Medical Laboratory Sciences|October 1, 1985
The potential of synthetic peptides for vaccinesM W Steward, C R Howard
Journal of Immunological Methods|April 22, 1985
The importance of antibody affinity in the performance of immunoassays for antibodyM W Steward, A M Lew
Journal of Immunological Methods|April 25, 1991
The influence of epitope density on the estimation of the affinity of antibody for complex antigensG P Holland, M W Steward
Immunology|January 1, 1977
The effect of immunological adjuvants on the relative affinity of anti-protein antibodiesR E Petty, M W Steward
Annals of the Rheumatic Diseases|February 1, 1977
Relationship of antibody affinity to onset of immune complex disease in New Zealand miceR E Petty, M W Steward
Pageof 14