Acute monoarticular arthritis caused by herpes simplex virus and cytomegalovirus.
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Biomedical subjects
Publications and source records attributed to T Pincus.
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A late-passage derivative of SC-1 cells with stable relative resistance to N- and B-tropic viruses but with retained sensitivity to NB-tropic viruses has been identified. Dual resistance was seen with the XC plaque assay, as well as reverse transcriptase assay and radioimmunoassay for viral p30. Evidence was found for resistance in clonal derivatives. These findings suggest a possible instability in determinants of cellular resistance to endogenous retroviruses and may be useful in further analysis of resistance to retrovirus infection.
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A Sepharose 4B chromatographic method for purification of retroviruses is described which was less time consuming, increased purified virus yields, conserved viral glycoprotein, and increased recovery of biological infectivity in comparison with conventional sucrose gradient ultracentrifugation techniques.
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Cloned stocks of several murine leukemia viruses (MuLVs) were shown to be leukemogenic for susceptible mice after more than nine years of in vitro passaging in mouse embryo fibroblasts. Tissue culture-grown Rauscher (R-) MuLVs injected into newborn or young adult BALB/c mice induced lymphocytic leukemias in 100% of the animals beginning 80 days post-inoculation. No erythroblastic leukemia was observed even after passaging the tissue-culture-grown R-MuLVs twice through mice, indicating that the component responsible for that disease had been lost or attenuated during growth in fibroblasts. The tissue-culture-grown stock of Moloney (M-) MuLVs likewise induced lymphocytic leukemias in 94% of injected newborn BALB/c mice, and the tissue culture-grown Gross (G-) MuLVs induced lymphocytic leukemias in 42% of injected newborn C3Hf mice. The host range and neutralization characteristics of viruses recovered from animals that became leukemic after injection with the tissue-culture-maintained MuLVs were found to be identical with those of the injected viruses. These data implicate the injected MuLVs in the induction of the leukemias and suggest that the capacity to induce the disease is stably inherited as part of the viral genome even in the absence of expression.
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Antisera to purified structural proteins of Rauscher murine leukemia virus, the major envelope glycoprotein, gp69/71, and the major internal protein, p30, were studied by immunofluorescence of viable and fixed virus-infected cells and by virus neutralization. Group-specific and type-specific determinants of gp69/71 were demonstrated by immunofluorescence and virus neutralization tests, indicating that these determinants are located in the cytoplasm and probably on the cell surface as well as on virus envelope. Antisera against p30 showed anti-group and anti-interspecies activities by immunofluorescence with no virus-neutralizing activity. Both antigenic determinants of gp69/71 were sensitive to guanidine-hydrochloride and to a lesser degree to ether treatment, whereas the group-specific determinants of p30 were relatively stable to these treatments.
Quantitative studies were made of the organ distribution of murine leukemia virus in AKR mice of various ages. Infectious virus first appeared shortly before or after birth and was continuously present in all mice thereafter. Highest infectivity titers were found in uterus and bone, with spleen slightly lower. Virus titers in normal thymus were relatively low, but increased significantly with the development of thymic lymphoma. The level of viremia decreased after the 1st month of life, but increased sharply in lymphomatous mice.
Previous studies have indicated that all naturally occurring murine leukemia viruses propagate significantly more efficiently on embryo cells of either NIH Swiss or BALB/c mice. Studies of the plaquing efficiency of representative viruses on embryo cells of various inbred and hybrid mice indicate that the pattern of sensitivity of the cells is genetically determined. All of 23 strains tested were found to resemble either NIH Swiss (N-type) or BALB/c (B-type) with respect to plaquing efficiency of these viruses. Virus growth on embryo cells derived from (N-type x B-type)F(1) hybrids indicated dominance of resistance to both types of viruses. Backcross hybrid studies indicated that a single locus is the primary determinant of the host-range patterns observed. This locus has no effect on growth of certain laboratory-passaged leukemia viruses which propagate equally well on embryo cells of all mouse strains, F(1), and backcross hybrids. Though other genetic and nongenetic factors influence viral growth or expression in vitro and in vivo, the genetic locus described appears of major significance in the biology of murine leukemia.