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Journal of Virology, September 2000, p. 7943-7951, Vol. 74, No. 17
Institute of Immunology, Federal Research
Centre for Virus Diseases of Animals, D-72076
Tübingen,1 and R&D/BIO
Research, Bayer AG Animal Health, D-51368
Leverkusen,2 Germany
Received 15 February 2000/Accepted 26 May 2000
The prophylactic application of inactivated parapox ovis viruses
(Baypamun; Bayer AG, Leverkusen, Germany) has been shown to reduce
efficiently the outbreak of stress-mediated diseases in different
species. However, little is known about the basic mechanism behind this
observed stimulatory property. We therefore tested eight inactivated
poxvirus strains belonging to three different genera
(Orthopoxvirus, Avipoxvirus, and
Parapoxvirus) for their capacity to activate cells of the
porcine innate and specific immune systems in vitro. The results
indicated that poxviruses failed to induce increased phagocytosis,
oxidative burst, or natural killer cell activity in swine. In contrast,
enhanced release of interleukin-2, alpha interferon, and gamma
interferon, as well as strong proliferation, could be measured. Flow
cytometric analyses and cell sorting experiments identified T-helper
cells as the main target responding to inactivated poxviruses: the
activated cells had a CD4high CD25+ major
histocompatibility complex type II-positive phenotype and were the
major source of secreted cytokines. Together, the results demonstrated
that all tested poxviruses possessed immunostimulating capacity. These
in vitro poxvirus-induced effects may be responsible at least in part
for the in vivo immunostimulating capacity of inactivated poxviruses.
0022-538X/00/$04.00+0
Copyright © 2000, American Society for Microbiology. All rights reserved.
Poxvirus-Induced Immunostimulating Effects on Porcine
Leukocytes
*
Corresponding author. Mailing address: Institute of
Immunology, Federal Research Centre for Virus Diseases of Animals,
Paul-Ehrlich-Str. 28, D-72076 Tübingen, Germany. Phone:
49-7071-967-256. Fax: 49-7071-967-303. E-mail:
armin.saalmueller{at}tue.bfav.de.
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