Pathogenicity of hemagglutinating encephalomyelitis (vomiting and wasting disease) virus of pigs, using different routes of inoculation.
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Biomedical subjects
Publications and source records attributed to K Andries.
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Live-virus and inactivated-virus vaccines were used to immunize sows against pseudorabies (Aujeszky's disease) virus. To test the efficacy of the vaccination, 53 pigs of different ages were taken from the 1st and the 2nd litters of vaccinated sows and placed separately in isolation units. The pigs were challenge exposed with virulent pseudorabies virus and examined for clinical signs, virus excretion, and serologic reaction. The challenge inoculum caused severe nervous or respiratory signs of disease in 12 of the 13 control pigs, with a mortality of 76%. The pigs from the 1st litters of sows vaccinated with the live-virus vaccine did not become sick, whereas 2 of the 9 pigs (22%) from the 2nd litters had clinical signs and died of pseudorabies. All pigs from sows vaccinated with the inactivated-virus vaccine remained healthy. The results of virus isolation from oronasal swabs, combined with the serotest results, indicated that challenge exposure of all except 1 of the pigs resulted in a subclinical infection with the formation of active immunity.
Despite major efforts by academic and pharmaceutical research teams, no definitive prevention or cure of AIDS has been achieved. Nevertheless, this research has yielded important information on how HIV replicates and causes disease. Moreover, several inhibitors, targeted at different steps in the life cycle of HIV, have been discovered, some of which have been licensed or are being studied in the clinic. One of the major obstacles towards more effective drugs or a vaccine, is the extraordinary variability in HIV strains which occur in different parts of the world over time, and in patients. The driving force behind these numerous variants is the combination of an error-prone reverse transcriptase, a viral enzyme transcribing the viral RNA genome into DNA on the one hand and the human immune system on the other hand. This puts a constant selection pressure on the HIV population leading to the emergence of escape mutants. It therefore poses an additional challenge on the discovery and development of HIV inhibitors. A research strategy should therefore encompass the following steps: (i) the identification of new lead compounds targeted at known or unknown steps in the HIV replicative cycle, (ii) the characterization and validation of their molecular targets with emphasis on the potential for lead optimization and the likelihood of resistance development, (iii) the study of combination strategies, and (iv) clinical evaluation and validation of the aforementioned concepts.