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Vet Res ; 43: 71, 2012 Oct 19.
Article in English | MEDLINE | ID: mdl-23083136

ABSTRACT

Partly due to climate change, and partly due to changes of human habitat occupation, the impact of tick-borne viruses is increasing. Nairobi sheep disease virus (NSDV) and Ganjam virus (GV) are two names for the same virus, which causes disease in sheep and goats and is currently known to be circulating in India and East Africa. The virus is transmitted by ixodid ticks and causes a severe hemorrhagic disease. We have developed a real-time PCR assay for the virus genome and validated it in a pilot study of the pathogenicity induced by two different isolates of NSDV/GV. One isolate was highly adapted to tissue culture, grew in most cell lines tested, and was essentially apathogenic in sheep. The second isolate appeared to be poorly adapted to cell culture and retained pathogenicity in sheep. The real-time PCR assay for virus easily detected 4 copies or less of the viral genome, and allowed a quantitative measure of the virus in whole blood. Measurement of the changes in cytokine mRNAs showed similar changes to those observed in humans infected by the closely related virus Crimean Congo hemorrhagic fever virus.


Subject(s)
Cytokines/genetics , Goat Diseases/genetics , Nairobi Sheep Disease/genetics , Nairobi sheep disease virus/pathogenicity , Real-Time Polymerase Chain Reaction/methods , Animals , Cytokines/metabolism , Goat Diseases/immunology , Goat Diseases/virology , Goats , Nairobi Sheep Disease/immunology , Nairobi Sheep Disease/virology , Nairobi sheep disease virus/classification , Nairobi sheep disease virus/genetics , Nairobi sheep disease virus/isolation & purification , RNA, Viral/analysis , Real-Time Polymerase Chain Reaction/veterinary , Sheep , Virulence , Virus Replication
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