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M W Kennedy

Showing results (71-80 of 106) with videos related to

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Molecular and Biochemical Parasitology|June 1, 1987
Resistance of nematode secretory products to cleavage by mast cell proteinasesF Qureshi, M W Kennedy, S Gibson, et al.
Parasite Immunology|February 15, 2000
Secretion of IL-12 by murine macrophages activated by immunoglobulin receptor-mediated internalization of the surface coat of Trichinella spiralis larvaeJ Modha, D Piedrafita, M C Roberts, et al.
Trends in Parasitology|October 6, 2001
River blindness: a role for parasite retinoid-binding proteins in the generation of pathology?J E Bradley, N Nirmalan, S L Kläger, et al.
Parasitology|October 1, 1992
The secreted and somatic proteinases of the bovine lungworm Dictyocaulus viviparus and their inhibition by antibody from infected and vaccinated animalsC Britton, D P Knox, G J Canto, et al.
The Journal of Biological Chemistry|June 27, 2001
Hydrophobic ligand binding by Zn-alpha 2-glycoprotein, a soluble fat-depleting factor related to major histocompatibility complex proteinsM W Kennedy, A P Heikema, A Cooper, et al.
Molecular and Biochemical Parasitology|January 15, 1987
Biophysical properties of the surface lipid of parasitic nematodesM W Kennedy, M Foley, Y M Kuo, et al.
Journal of Immunology (Baltimore, Md. : 1950)|July 1, 1987
Shared carbohydrate epitopes on distinct surface and secreted antigens of the parasitic nematode Toxocara canisR M Maizels, M W Kennedy, M Meghji, et al.
Molecular and Biochemical Parasitology|April 1, 1995
The gp15/400 polyprotein antigen of Brugia malayi binds fatty acids and retinoidsM W Kennedy, J E Allen, A S Wright, et al.
Parasite Immunology|July 1, 1987
Species-specific and common epitopes on the secreted and surface antigens of Toxocara cati and Toxocara canis infective larvaeM W Kennedy, R M Maizels, M Meghji, et al.
The Biochemical Journal|May 7, 1999
Sequence-divergent units of the ABA-1 polyprotein array of the nematode Ascaris suum have similar fatty-acid- and retinol-binding properties but different binding-site environmentsJ Moore, L McDermott, N C Price, et al.
Pageof 11

Showing results (71-80 of 106) with videos related to

Sort By:
Pageof 11
Molecular and Biochemical Parasitology|June 1, 1987
Resistance of nematode secretory products to cleavage by mast cell proteinasesF Qureshi, M W Kennedy, S Gibson, et al.
Parasite Immunology|February 15, 2000
Secretion of IL-12 by murine macrophages activated by immunoglobulin receptor-mediated internalization of the surface coat of Trichinella spiralis larvaeJ Modha, D Piedrafita, M C Roberts, et al.
Trends in Parasitology|October 6, 2001
River blindness: a role for parasite retinoid-binding proteins in the generation of pathology?J E Bradley, N Nirmalan, S L Kläger, et al.
Parasitology|October 1, 1992
The secreted and somatic proteinases of the bovine lungworm Dictyocaulus viviparus and their inhibition by antibody from infected and vaccinated animalsC Britton, D P Knox, G J Canto, et al.
The Journal of Biological Chemistry|June 27, 2001
Hydrophobic ligand binding by Zn-alpha 2-glycoprotein, a soluble fat-depleting factor related to major histocompatibility complex proteinsM W Kennedy, A P Heikema, A Cooper, et al.
Molecular and Biochemical Parasitology|January 15, 1987
Biophysical properties of the surface lipid of parasitic nematodesM W Kennedy, M Foley, Y M Kuo, et al.
Journal of Immunology (Baltimore, Md. : 1950)|July 1, 1987
Shared carbohydrate epitopes on distinct surface and secreted antigens of the parasitic nematode Toxocara canisR M Maizels, M W Kennedy, M Meghji, et al.
Molecular and Biochemical Parasitology|April 1, 1995
The gp15/400 polyprotein antigen of Brugia malayi binds fatty acids and retinoidsM W Kennedy, J E Allen, A S Wright, et al.
Parasite Immunology|July 1, 1987
Species-specific and common epitopes on the secreted and surface antigens of Toxocara cati and Toxocara canis infective larvaeM W Kennedy, R M Maizels, M Meghji, et al.
The Biochemical Journal|May 7, 1999
Sequence-divergent units of the ABA-1 polyprotein array of the nematode Ascaris suum have similar fatty-acid- and retinol-binding properties but different binding-site environmentsJ Moore, L McDermott, N C Price, et al.
Pageof 11