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Biomedical subjects

R G Ganges

Publications and source records attributed to R G Ganges.

3 recordsLinked to original sources

Natural killer cell activity during mouse hepatitis virus infection: response in the absence of interferon.

The ability of the JHM3 strain of mouse hepatitis virus (MHV) to induce natural killer (NK) cells was examined. Infection of C57BL/6 (B6) mice with this virus resulted in the augmentation of natural cytotoxicity against YAC-I target cells in the absence of a detectable interferon response. The cells responsible for this increased cytotoxicity were sensitive to complement-mediated lysis with an anti-Q-5 reagent but not with a Thy 1.2 antiserum, indicating that they possess an NK-like surface phenotype. Although variation in the NK response of individual B6 mice following JHM virus infection was found, even the animal with the most responsive NK cell population had no detectable interferon in the spleen. This finding contrasted with observations with an unrelated virus (lymphocytic choriomeningitis virus) and a serologically related strain of MHV. Infection with both of these viruses induced augmented NK cell activity and interferon responses. In addition, we found that neither the ability to mount an augmented NK cell response nor preferential lysis of virus-infected targets correlated with resistance or susceptibility to JHM virus infection.

Animals

Host cell nuclear function and murine hepatitis virus replication.

Murine hepatitis virus strains A59 and JHM replicated with equal efficiency in both nucleated and enucleated L2 cells. In addition, treatment of the host cell with either actinomycin D or alpha-amanitin, both inhibitors of host cell RNA synthesis, had no effect on virus replication. Therefore, the replication of murine hepatitis virus did not appear to depend upon either the presence of the host cell nucleus or continued host cell RNA synthesis.

Amanitins

Serum complement-like opsonic activities in human, animal, vegetable, and proprietary milks.

Human, animal, proprietary, and soy milks are comparable to human serum C5 in opsonization of baker's yeast. Bovine milk and human serum opsonically reconstitute C5-deficient mouse serum. Such reconstitution is selectively inhibited by antiserum to human C5. Further characterization suggests that bovine milk contains material structurally and functionally similar, but not identical, to human C5.

Animals