Vet Med - Czech, 2013, 58(7):359-363 | DOI: 10.17221/6916-VETMED

Detection of Visna Maedi virus in mesenteric lymph nodes and in other lymphoid tissues of sheep three years after respiratory infectionOriginal Paper

S. Preziuso, G.E. Magi, S. Mari, G. Renzoni
University of Camerino, Camerino, Italy

Visna/Maedi virus (VMV), a small ruminant lentivirus responsible for lymphoproliferative pneumonia, encephalitis, arthritis and/or mastitis in sheep, has been detected in different non-lymphoid organs. However, only a few investigations have been carried out in lymphoid tissues. In this study, some lymphoid tissues and lymph node draining or non-draining VMV target organs from five sheep infected experimentally by the respiratory route three years previously were investigated. Archival samples of spleen, red bone marrow, caudal mediastinal lymph nodes, mammary lymph nodes, popliteal lymph nodes and mesenteric lymph nodes were tested by PCR for the presence of proviral DNA. Popliteal and mesenteric lymph node samples were tested also by immunohistochemical staining of the viral capsid antigen p28. The proviral DNA was detected by PCR in all the lymphoid tissue samples from the infected sheep. The viral antigen was stained in mononuclear cells in popliteal and mesenteric lymph nodes of the infected sheep. Although the lymph nodes draining the classical target organs seem to be more infected than the others, both the viral capsid antigen and the proviral DNA were present also in lymph nodes draining non-target organs, such as the mesenteric lymph nodes. These findings show the presence of VMV in different lymphoid tissues in the late stages of infection and suggest a potential role of these tissues as a site for viral reservoir and replication, even three years after infection.

Keywords: Visna, Maedi virus; sheep; lymphoid tissue; immunohistochemistry; PCR; experimental infection

Published: July 31, 2013  Show citation

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Preziuso S, Magi GE, Mari S, Renzoni G. Detection of Visna Maedi virus in mesenteric lymph nodes and in other lymphoid tissues of sheep three years after respiratory infection. Vet Med - Czech. 2013;58(7):359-363. doi: 10.17221/6916-VETMED.
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References

  1. Angelopoulou K, Brellou GD, Vlemmas I (2006): Detection of Maedi-Visna Virus in the kidneys of naturally infected sheep. Journal of Comparative Pathology 134, 329-335. Go to original source... Go to PubMed...
  2. Bird P, Blacklaws B, Reyburn HT, Allen D, Hopkins J, Sargan D, McConnell I (1993): Early events in immune evasion by the lentivirus maedi-visna occurring within infected lymphoid tissue. Journal of Virology 67, 5187- 5197. Go to original source... Go to PubMed...
  3. Brellou GD, Angelopoulou K, Poutahidis T, Vlemmas I (2007): Detection of maedi-visna virus in the liver and heart of naturally infected sheep. Journal of Comparative Pathology 136, 27-35. Go to original source... Go to PubMed...
  4. Brodie SJ, Pearson LD, Zink MC, Bickle HM, Anderson BC, Marcom KA, DeMartini JC (1995): Ovine lentivirus expression and disease. Virus replication, but not entry, is restricted to macrophages of specific tissues. American Journal of Pathology 146, 250-263.
  5. Capucchio MT, Sanna E, Sanna MP, Farigu S, Minelli R, Guarda F (2003): Maedi-visna virus detection in ovine third eyelids. Journal of Comparative Pathology 129, 37-43. Go to original source... Go to PubMed...
  6. Estaquier J, Hurtrel B (2008): Mesenteric lymph nodes, a sanctuary for the persistance of HIV. Escape mechanisms. Medecine Sciences 24, 1055-1060. Go to original source... Go to PubMed...
  7. Gendelman HE, Narayan O, Molineaux S, Clements JE, Ghotbi Z (1985): Slow, persistent replication of lentiviruses: role of tissue macrophages and macrophage precursors in bone marrow. Proceedings of the National Academy of Sciences of the United States of America 82, 7086-7090. Go to original source... Go to PubMed...
  8. Houwers DJ, Pekelder JJ, Akkermans JWPM, Van der Molen EJ, Schreuder BEC (1988): Incidence of indurative lymphocytic mastitis in a flock of sheep infected with maedi-visna virus. Veterinary Record 122, 435-437. Go to original source... Go to PubMed...
  9. Narayan O, Clements J (1989): Biology and pathogenesis of lentiviruses. Journal of General Virology 70, 1617- 1639. Go to original source... Go to PubMed...
  10. Niesalla H, McNeilly TN, Ross M, Rhind SM, Harkiss GD (2008): Experimental infection of sheep with visna/maedi virus via the conjunctival space. Journal of General Virology 89, 1329-1337. Go to original source... Go to PubMed...
  11. Pepin M, Vitu C, Russo P, Mornex JF, Peterhans E (1998): Maedi-visna virus infection in sheep: a review. Veterinary Research 29, 341-367.
  12. Preziuso S Taccini E, Rossi G, Renzoni G, Braca G (2003): Experimental maedi visna virus infection in sheep: a morphological, immunohistochemical and PCR study after three years of infection. European Journal of Histochemistry 47, 373-378. Go to original source... Go to PubMed...
  13. Preziuso S, Renzoni G, Allen TE, Taccini E, Rossi G, DeMartini JC, Braca G (2004): Colostral transmission of maedi visna virus: sites of viral entry in lambs born from experimentally infected ewes. Veterinary Microbiology 104, 157-164. Go to original source... Go to PubMed...
  14. Preziuso S, Magi GE, Valente C, Cuteri V (2009): Detection of the Maedi Visna Virus in the popliteal lymph nodes of sheep infected by the respiratory route. Veterinary Research Communications 33, Suppl 1, 153-155. Go to original source... Go to PubMed...
  15. Ravazzolo AP, Nenci C, Vogt HR, Waldvogel A, ObexerRuff G, Peterhans E, Bertoni G (2006): Viral load, organ distribution, histopathological lesions, and cytokine mRNA expression in goats infected with a molecular clone of the caprine arthritis encephalitis virus. Virology 350, 116-127. Go to original source... Go to PubMed...
  16. Rosati S, Kwang J, Keen JE (1995): Genome analysis of North American small ruminant lentiviruses by polymerase chain reaction and restriction enzyme analysis. Journal of Veterinary Diagnostic Investigation 7, 437-443. Go to original source... Go to PubMed...
  17. Ryan S, Tiley L, Mcconnell I, Blacklaws B (2000): Infection of dendritic cells by the maedi-visna lentivirus. Journal of Virology 74, 10096-10103. Go to original source... Go to PubMed...
  18. Storset AK, Evensen O, Rimstad E (1997): Immunohistochemical identification of caprine arthritis-encephalitis virus in paraffin-embedded specimens from naturally infected goats. Veterinary Pathology 34, 180-188. Go to original source... Go to PubMed...
  19. Surman PG, Daniels E, Dixon BR (1987): Caprine arthritis-encephalitis virus infection of goats in South Australia. Australian Veterinary Journal 64, 266-271. Go to original source... Go to PubMed...
  20. Van der Molen EJ, Houwers DJ (1987): Indurative lymphocytic mastitis in sheep after experimental infection with maedi-visna virus. Veterinary Quarterly 9, 193-202. Go to original source... Go to PubMed...
  21. Zink MC, Narayan O, Kennedy PG, Clements JE (1987): Pathogenesis of visna/maedi and caprine arthritis-encephalitis: new leads on the mechanism of restricted virus replication and persistent inflammation. Veterinary Immunology and Immunopathology 15, 167-180. Go to original source... Go to PubMed...
  22. Zink MC, Yager JA, Myers JD (1990): Pathogenesis of caprine arthritis encephalitis virus. Cellular localization of viral transcripts in tissues of infected goats. American Journal of Pathology 136, 843-854.

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