Viremia in human mumps virus infections.
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Evidence from microscopic studies indicates that hemolysis caused by the mumps virus hemolysin is a chemical type of hemolysis. Chromatographic analyses of the reaction mixture of erythrocytes and mumps virus following hemolysis indicate that hemolysis is not due to the action of a lecithinase A and that lysolecithin does not play a part in this process. The alteration of a component of the erythrocyte similar to sphingomyelin suggests that some of the phosphatides other than lecithin may be either directly or indirectly affected in the process of hemolysis of red blood cells by the mumps virus.
Efforts were made to elucidate the nature of the resistance to vesicular stomatitis virus (VSV) observed in MCN cultures persistently infected with Newcastle disease, mumps, or 6-6 viruses (MCN(NDV), MCN(Mps) and MCN(6-6), respectively). Cells derived from persistently infected cultures adsorbed VSV to the same extent as their uninfected counterparts. Only a fraction of the adsorbed virus could be recovered from the cells indicating that it enters into an eclipse in all of the cell types. While propagation of VSV in MCN cells is largely inhibited at low pH levels, the resistance of persistently infected cultures could not be ascribed to their increased lactic acid formation. Resistance was not absolute in that a few cells in persistently infected cultures apparently supported VSV reproduction. Furthermore resistance of the cultures was found to be transitory in that the VSV infection gradually gained the upper hand after 2 to 4 weeks of incubation. Addition of ultraviolet-inactivated NDV to MCN cultures induced resistance to VSV as long as the equivalent of at least one ID(50) (for chick embryos) of inactivated virus was provided per cell. Establishment of resistance required some time and its duration depended upon whether or not the free inactivated NDV was removed or neutralized after given adsorption periods. The transitory nature of resistance in persistently infected cultures, or in MCN cells following adsorption of inactivated NDV, is most likely explained by the fact that the cells continue to divide and that the daughter cells are, at least in part, susceptible to VSV. The results are compatible with the conclusion that the resistance observed represents another example of interference between 2 viruses.
Hemolysis of chicken red blood cells by mumps virus is associated with the release of sphingomyelin from the stromal lipoprotein and the destruction of 65 per cent of the sphingomyelin of the red cell stroma. However, the virus had no effect on isolated phosphatides extracted from the erythrocytes. The hemolytic action of the virus and changes in sphingomyelin content of the erythrocytes fail to occur at a pH of 6.0. The viral hemolysis of human erythrocytes is not associated with similar alterations in their content of sphingomyelin. The absence of lecithin from sheep erythrocytes, which are also lysed by mumps virus, is additional evidence that a viral lecithinase is not associated with the hemolytic property of mumps virus. Mumps virus concentrated from the amniotic fluid of viral infected chick embryos contains about 7 per cent phosphatide, 60 per cent of which is sphingomyelin.
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