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Veterinary Immunology and Immunopathology|April 9, 1998
Isolation and characterisation of equine dendritic cellsE Siedek, S Little, S Mayall, et al.Journal of Comparative Pathology|June 29, 2001
The anti-human CD21 antibody, BU33, identifies equine B cellsS Mayall, E Siedek, A S HamblinClinical and Experimental Immunology|August 8, 2002
Equid herpesvirus 1 infection of endothelial cells requires activation of putative adhesion molecules: an in vitro modelD Smith, A Hamblin, N EdingtonVeterinary Immunology and Immunopathology|February 9, 1999
Equine herpesvirus type 1 infects dendritic cells in vitro: stimulation of T lymphocyte proliferation and cytotoxicity by infected dendritic cellsE M Siedek, M Whelan, N Edington, et al.Journal of Immunological Methods|February 5, 1992
A method of preparing blood leucocytes for flow cytometry which prevents upregulation of leucocyte integrinsA Hamblin, M Taylor, J Bernhagen, et al.Research in Veterinary Science|October 13, 1998
Equine peripheral blood mononuclear cells proliferate in response to tetanus toxoid antigenJ McKelvie, S Little, A P Foster, et al.Research in Veterinary Science|May 1, 1980
The protection of rabbits against the herpesvirus of malignant catarrhal fever by inactivated vaccinesN Edington, W PlowrightBiochemical and Biophysical Research Communications|June 11, 1999
Clusterin prevents aggregation of neuropeptide 106-126 in vitroS McHattie, N EdingtonActa Veterinaria Hungarica|June 14, 2002
Equid herpesvirus 1 is neurotropic in mice, but latency from which infectious virus can be reactivated does not occurJ Iqbal, N EdingtonVeterinary Microbiology|June 1, 1983
The pathogenicity in mice of respiratory, abortion and paresis isolates of equine herpesvirus-1J R Patel, N EdingtonPageof 57