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1.
J Vet Med Sci ; 71(12): 1569-78, 2009 Dec.
Article in English | MEDLINE | ID: mdl-20046023

ABSTRACT

European Russia is a highly endemic area of hemorrhagic fever with renal syndrome (HFRS), a rodent-borne zoonotic disease, caused by hantaviruses. In total, 145 small mammals of four species (Myodes glareolus, Apodemus flavicollis, A. agrarius, and A. uralensis) were trapped in the Samara region of European Russia in August 2005 and examined for the presence of hantavirus (HV). Anti-HV antibodies were found in six of 68 (8.8%) M. glareolus and in one of 19 (5.3%) A. flavicollis by indirect immunofluorescent antibody assay (IFA). The Puumala virus (PUUV), which is one of the hantavirus species, was detected in the lungs of seven M. glareolus by RT-PCR. The virus S-segment was extremely similar (96.2% to 99.3%) to the sequence found in a fatal case of HFRS in the Samara region. Phylogenetic analyses of S and M segments showed that the Samara PUUVs form a cluster within the Russian Volga lineage and apparently differ from other European PUUVs. Anti-PUUV antibodies were found in blood sera from seven HFRS patients and from one undiagnosed patient from the Samara region, using IFA and an enzyme-linked immunosorbent assay (ELISA). These data suggest that the bank vole M. glareolus is a primary natural reservoir and vector for PUUV, which is the main causative agent of HFRS in humans in the Samara region.


Subject(s)
Arvicolinae/virology , Hemorrhagic Fever with Renal Syndrome/epidemiology , Murinae/virology , Orthohantavirus/isolation & purification , Puumala virus/isolation & purification , Animals , Antibodies, Viral/blood , Enzyme-Linked Immunosorbent Assay , Orthohantavirus/genetics , Hemorrhagic Fever with Renal Syndrome/virology , Humans , Phylogeny , Russia/epidemiology
2.
J Virol Methods ; 173(1): 17-23, 2011 Apr.
Article in English | MEDLINE | ID: mdl-21192975

ABSTRACT

Puumala virus (PUUV) and other Arvicolinae-borne hantaviruses are difficult to cultivate in cell culture. To isolate these hantaviruses efficiently, hantavirus nucleocapsid protein (NP)-positive but seronegative wild rodents were selected by NP-detection ELISA. Three of 68 Myodes glareolus captured in Samara, Russia, were NP-positive and seronegative. Syrian hamsters were inoculated with lung homogenates from NP-positive rodents for virus propagation. Virus isolation in vitro was carried out by inoculation of lung homogenates of NP-positive hamsters to Vero E6 cell monolayers. Two PUUV strains (Samara49/CG/2005 and Samara94/CG/2005) from M. glareolus were isolated in Vero E6 cells. Nucleotide and amino acid sequence identities of the S segment of these isolates to those of PUUV F-s808 from a fatal HFRS patient in Samara region were 96.7-99.3% and 99.3-100.0%, respectively. Morphologic features of Vero E6 cells infected with PUUV strain Samara49/CG/2005 were quite similar to those of Hantaan virus-infected cells. Isolation of Hokkaido virus from Myodes rufocanus captured in Hokkaido, Japan, was also performed. Hokkaido virus NP and RNA were recovered and maintained in hamsters. These results suggest that inoculation of Syrian hamsters with rodent samples is an efficient method for the isolation and maintenance of PUUV and other Arvicolinae-borne hantaviruses.


Subject(s)
Arvicolinae/virology , Puumala virus/isolation & purification , Virology/methods , Animals , Chlorocebus aethiops , Cricetinae , Enzyme-Linked Immunosorbent Assay/methods , Japan , Mesocricetus , Models, Animal , Molecular Sequence Data , RNA, Viral/genetics , Russia , Sequence Analysis, DNA , Vero Cells , Virus Cultivation
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