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Electron microscopy of mouse thymic virus

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Summary

Thymuses of mice infected with mouse thymic virus (MTV), a herpesvirus, were examined with the electron microscope. Damage was manifested by distortions of cells, nuclei, and other organelles, with cellular aggregation apparent at advanced stages of necrosis. Infected cells also contained MTV particles and filaments. Negative staining showed that naked MTV capsids were icosahedral in shape with diameters ranging from 95 to 110 nm. Enveloped capsids appeared spherical and ranged in diameter from 125 to 165 nm. Immunogold labeling revealed the presence of antigenic sites around both naked and enveloped capsids, and also on the 10 nm filaments. The use of electron microscopy and immunohistochemical techniques as diagnostic tools to demonstrate MTV infection could prove valuable for the detection of the infection and the study of its pathogenesis.

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References

  1. Alain R, Nadon F, Séguin C, Payment P, Trudel M (1987) Rapid virus subunit visualization by direct sedimentation of samples on electron microscope grids. J Virol Methods 16: 209–216

    Google Scholar 

  2. Athanassious R, Klyne MA, Ali MA (1984) Regulation of cyclic nucleotides in retinal photoreceptors: an ultracytochemical approach on the role of cyclases. Cell Tissue Res 237: 95–101

    Google Scholar 

  3. Bendayan M (1984) Protein A-gold electron microscopic immuno-cytochemistry: methods, applications, and limitations. J Electron Microsc Tech 1: 243–270

    Google Scholar 

  4. Cross SS, Parker JC, Rowe WP, Robbins ML (1979) Biology of mouse thymic virus, a herpesvirus of mice, and the antigenic relationship to mouse cytomegalovirus. Infect Immun 26: 1186–1195

    Google Scholar 

  5. Fracca G, Parks VR (1973) A routine technique for double-staining ultrathin sections using uranyl and lead salts. J Cell Biol 25: 151–151

    Google Scholar 

  6. Frens G (1973) Controlled nucleation for the regulation of the particle size in monodisperse gold solutions. Nature Phys Sci 241: 20–22

    Google Scholar 

  7. Garzon S, Bendayan M, Kurstak E (1982) Ultrastructural localization of viral antigens using the protein A-gold technique. J Virol Methods 5: 67–73

    Google Scholar 

  8. Lussier G, Berthiaume L, Payment P (1974) Electron microscopy of murine cytomegalovirus: Development of the virus in vivo and in vitro. Arch Ges Virusforsch 46: 269–280

    Google Scholar 

  9. Lussier G, Guénette D, Shek WR, Descôteaux JP (1988a) Detection of antibodies to mouse thymic virus by enzyme-linked immunosorbent assay. Can J Vet Res 52: 236–238

    Google Scholar 

  10. Lussier G, Guénette D, Shek WR, Descôteaux JP (1988b) Evaluation of mouse thymic virus antibody detection techniques. Lab Anim Sci 38: 577–579

    Google Scholar 

  11. Parker J, Vernon ML, Cross SS (1973) Classification of mouse thymic virus as a herpesvirus. Infect Immun 7: 305–308

    Google Scholar 

  12. Rowe WP, Capps WI (1961) A new mouse virus causing necrosis of the thymus in newborn mice. J Exp Med 113: 831–844

    Google Scholar 

  13. Smith KO (1964) Relationship between the envelope and the infectivity of herpes simplex virus. Proc Soc Exp Biol 115: 814–816

    Google Scholar 

Download references

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Athanassious, R., Alain, R. & Lussier, G. Electron microscopy of mouse thymic virus. Archives of Virology 113, 143–150 (1990). https://doi.org/10.1007/BF01316668

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  • DOI: https://doi.org/10.1007/BF01316668

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