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The effect of long-term exposure to cigarette smoke on the height and specificity of the secondary immune response to influenza virus in a murine model system

Published online by Cambridge University Press:  15 May 2009

J. S. Mackenzie
Affiliation:
Department of Microbiology, Queen Elizabeth II Medical Centre, Nedlands, Western Australia 6009
R. L. P. Flower
Affiliation:
Department of Microbiology, Queen Elizabeth II Medical Centre, Nedlands, Western Australia 6009
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The effect of long-term exposure to cigarette smoke on the height and specificity of the secondary humoral immune response to influenza was investigated in a murine model system. It was shown that if mice were pre-immunized with a sub-lethal infection of influenza virus and then exposed to cigarette smoke daily for 36 weeks, they were able to mount a secondary immune response of normal height on subsequent challenge with the homologous virus strain. The response, however, was less specific than that elicited in control mice, with high titres of cross-reacting antibody by haemagglutination-inhibition to the following strain in the same antigenic series. Recall of antibody to the previous strain in the antigenic series was not observed in either control or smoke-exposed animals. These results serve to correct an earlier discrepancy between the murine system and human studies in which the response to influenza infection in mice was depressed by prolonged exposure to cigarette smoke, whereas in man the response of smokers did not differ significantly from that of non-smokers. This apparent discrepancy had been caused by a lack of previous experience of influenza in the mice, which had therefore mounted a primary response, compared with the secondary response observed in the human studies.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1979

References

Chalmer, J., Holt, P. G. & Keast, D. (1975). Cell-mediated immune response to transplanted tumors in mice chronically exposed to fresh cigarette smoke. Journal of the National Cancer Institute 52, 1129–34.Google Scholar
Finklea, J. F., Hasselblad, V., Riggan, W. B., Nelson, W. C., Hammer, D. I. & Newill, V. A. (1971). Cigarette smoking and haemagglutination inhibition response to influenza after natural disease and immunization. American Review of Respiratory Disease 104, 368–76.CrossRefGoogle ScholarPubMed
Finklea, J. F., Sandifer, S. H. & Smith, D. D. (1969). Cigarette smoking and epidemic influenza. American Journal of Epidemiology 90, 390–9.Google Scholar
Holt, P. G., Chalmer, J., Roberts, L. M., Papadimitriou, J. M., Thomas, W. R. & Keast, D. (1976). Low-tar and high-tar cigarettes: comparison of effects in mice. Archives of Environmental Health 31, 258–65.CrossRefGoogle Scholar
Holt, P. G. & Keast, D. (1973). Cigarette-smoke inhalation: effects on cells of the immune series in the mouse lung. Life Sciences 12, 377–83.Google Scholar
Holt, P. G. & Keast, D. (1977). Environmentally induced changes in immunological function: acute and chronic effects of tobacco smoke and other atmospheric contaminants in man and in experimental animals. Bacteriological Reviews 41, 205–16.Google Scholar
Holt, P. G., Keast, D. & Mackenzie, J. S. (1978). Infectious and neoplastic respiratory diseases associated with cigarette smoking. Animal model: immunosuppression in the mouse induced by long-term exposure to cigarette smoke. American Journal of Pathology 90, 281–4.Google Scholar
Holt, P. G., Thomas, W. R. & Keast, D. (1974). Smoking and immunity. Lancet i, 152.Google Scholar
Mackenzie, J. S. (1976). The effect of cigarette smoke on influenza virus infection: a murine model system. Life Sciences 19, 409–12.Google Scholar
Mackenzie, J. S., Mackenzie, I. H. & Holt, P. G. (1976). The effect of cigarette smoking on susceptibility to epidemic influenza and on serological responses to live attenuated and killed subunit influenza vaccines. Journal of Hygiene 77, 409–17.CrossRefGoogle ScholarPubMed
Rylander, R. (1971). Lung clearance of particles and bacteria. Effects of cigarette smoke exposure. Archives of Environmental Health 23, 321–6.CrossRefGoogle ScholarPubMed
Rylander, R. (1974). Pulmonary cell responses to inhaled cigarette smoke. Archives of Environmental Health 29, 329–33.CrossRefGoogle ScholarPubMed
Thomas, W. R., Holt, P. G. & Keast, D. (1973 a). Cellular immunity in mice chronically exposed to fresh cigarette smoke. Archives of Environmental Health 27, 372–5.Google Scholar
Thomas, W. R., Holt, P. G. & Keast, D. (1973 b). Effect of cigarette smoking on primary and secondary humoral responses in mice. Nature, London 243, 240–1.Google Scholar
Thomas, W. R., Holt, P. G. & Keast, D. (1975). Humoral immune response of mice chronically exposed to fresh cigarette smoke. Archives of Environmental Health 30, 7880Google Scholar
Virelizier, J. L. (1975). Host defenses against influenza virus: the role of anti-haemagglutinin antibody. Journal of Immunology 115, 434–9.Google Scholar
Virelizier, J. L., Allison, A. C. & Schild, G. C. (1974). Antibody responses to antigenic determinants of influenza virus haemagglutinin. II. Original antigenic sin: a bone marrow-derived lymphocyte memory phenomenon modulated by thymus-derived lymphocytes. Journal of Experimental Medicine 140, 1571–8.CrossRefGoogle Scholar