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Biomedical subjects

D K Kelsey

Publications and source records attributed to D K Kelsey.

4 recordsLinked to original sources

Suppressed response to interferon inducation in mice infected with encephalomyocarditis virus, Semliki forest virus, influenza A2 virus, Herpesvirus hominis type 2, or murine cytomegalovirus.

Mice infected with encephalomyocarditis virus, Semliki Forest virus, influenza A2 virus, Herpesvirus hominis type 2, or murine cytomegalovirus developed a state of hyporeactivity to interferon induction. In general, the capacity of infected animals to produce interferon in response to inducers became progressively impaired during the course of infection. The severity and time of onset of hyporeactivity, however, were dependent upon the inducer and the nature of the viral infection. During viral infections associated with generalized hyporesponsiveness, a factor that could inhibit interferon production by murine cells in culture was identified in the serum. This serum hyporeactive factor may have mediated the development of hyporeactivity in vivo. Hyporeactivity of the host's interferon response was associated with progression of viral infection and may be partially responsible for the limited effectiveness of interferon inducers in the modification of viral infections, when administered after onset of symptoms.

Animals

Alteration of host defense mechanisms by murine cytomegalovirus infection.

An animal model of a sublethal infection, utilizing murine cytomegalovirus (MCMV), was developed to determine whether immunological factors could contribute to the establishment of a persistent viral infection. Adult female C3H mice inoculated intraperitoneally with 10(5) plaque-forming units of MCMV developed splenomegaly 5 to 12 days after infection. Virus replicated to peak titers (10(3) to 10(6) plaque-forming units per g of tissue) in liver, spleen, lung, kidney, and salivary gland tissue during the acute phase of the infection (3 to 12 days); it then decreased to undetectable levels in all tissues except salivary gland. Serum interferon was detected as early as 12 h after infection, peaked at 36 h (1,093 U/ml), and was undetectable by 4 days after infection. MCMV-infected animals were hyporeactive to interferon induction with New castle disease virus on days 5 to 9 of the infection. Splenic lymphocyte reactivity to phytohemagglutinin and lipopolysaccharide was normal early during the course of the infection, was suppressed during the acute phase of the infection, and had returned to normal by day 18. These data indicate that several parameters of host defense are transiently suppressed during the course of a MCMV infection. The capacity of cytomegaloviruses to alter host resistance may be one factor that contributes to the establishment of a persistent infection.

Animals

Effect of cytosine arabinoside and 5-iodo-2'-deoxyuridine on a cytomegalovirus infection in newborn mice.

Murine cytomegalovirus was inhibited by 0.6 to 1.2 mug of cytosine arabinoside per ml and by 0.3 to 0.6 mug of 5-iodo-2'-deoxyuridine in mouse embryo fibroblast cells. Human cytomegalovirus was inhibited by similar concentrations of the two drugs in WI-38 cells. Intraperitoneal inoculation of suckling mice with 10(4.5) plaque-forming units of murine cytomegalovirus provides a model for disseminated human cytomegalovirus infection in human newborn infants and is characterized by a widespread infection involving the liver, spleen, lung, kidney, and brain with a 70 to 90% mortality in 7 to 9 days. Treatment with 12.5 mg of cytosine arabinoside per kg or 25 mg of 5-iodo-2'-deoxyuridine per kg twice daily for 8 days had no effect on final mortality or the pathogenesis of the infection with the exception of reduced viral titers in the spleen of 5-iodo-2'-deoxyuridine-treated animals. These data indicate that neither cytosine arabinoside nor 5-iodo-2'-deoxyuridine are effective in the treatment of murine cytomegalovirus infections in suckling mice and suggest that they may be of limited value in the treatment of severe cytomegalovirus infections in human neonates.

Animals