Specific and Nonspecific Cell-Mediated Resistance to Influenza Virus in Mice

Author:

Shayegani Mehdi1,Lief Florence S.1,Mudd Stuart1

Affiliation:

1. Schools of Medicine and Veterinary Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19174

Abstract

We found that influenza virus had the capacity to replicate in the peritoneal macrophages of normal mice, as revealed by the development of hemadsorption and the appearance intracellularly of S and V antigens. Cell-mediated resistance was studied in mice infected with influenza virus or a bacterial sytem of induction-elicitation. In the homologous system, mice were injected intraperitoneally or exposed by aerosol to a sublethal dose of an egg-adapted swine strain of influenza virus. In the heterologous system, they were infected repeatedly with Staphylococcus aureus and elicited by subcutaneous or aerosol administration of staphylococcal antigens. The peritoneal macrophages from mice specifically or nonspecifically immunized were significantly more resistant than those from normal mice. Also longer survival to in vivo challenge by the mouse-adapted virus, as compared with normal mice, was indicated in bacterially stimulated mice.

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Immunology,Microbiology,Parasitology

Reference20 articles.

1. Protection of mice against vaccinia virus by bacterial infection and sustained stimulation with specific bacterial antigens;Allen E. G.;Infect. Immunity,1973

2. Cellular hypersensitivity and cellular immunity in the pathogenesis of tuberculosis: specificity, systemic and local nature and associated macrophage enzymes;Dannenberg A. M.;Bacteriol. Rev.,1968

3. Induction of delayed hypersensitivity to influenza and mumps virus in mice;Feinstone S. M.;J. Immunol.,1969

4. Cellular immunity in host resistance to viral infections;Glasgow L. A.;Arch. Intern. Med.,1970

5. Relationships between viruses and leucocytes;Gresser I.;Progr. Med. Virol.,1969

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