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1.
N Engl J Med ; 380(22): 2116-2125, 2019 05 30.
Article in English | MEDLINE | ID: mdl-31141633

ABSTRACT

BACKGROUND: In 2017, surveillance for tickborne diseases in China led to the identification of a patient who presented to a hospital in Inner Mongolia with a febrile illness that had an unknown cause. The clinical manifestation of the illness was similar to that of tickborne encephalitis virus (TBEV) infection, but neither TBEV RNA nor antibodies against the virus were detected. METHODS: We obtained a blood specimen from the index patient and attempted to isolate and identify a causative pathogen, using genome sequence analysis and electron microscopy. We also initiated a heightened surveillance program in the same hospital to screen for other patients who presented with fever, headache, and a history of tick bites. We used reverse-transcriptase-polymerase-chain-reaction (RT-PCR) and cell-culture assays to detect the pathogen and immunofluorescence and neutralization assays to determine the levels of virus-specific antibodies in serum specimens from the patients. RESULTS: We found that the index patient was infected with a previously unknown segmented RNA virus, which we designated Alongshan virus (ALSV) and which belongs to the jingmenvirus group of the family Flaviviridae. ALSV infection was confirmed by RT-PCR assay in 86 patients from Inner Mongolia and Heilongjiang who presented with fever, headache, and a history of tick bites. Serologic assays showed that seroconversion had occurred in all 19 patients for whom specimens were available from the acute phase and the convalescent phase of the illness. CONCLUSIONS: A newly discovered segmented virus was found to be associated with a febrile illness in northeastern China. (Funded by the National Key Research and Development Program of China and the National Natural Science Foundation of China.).


Subject(s)
Communicable Diseases, Emerging/virology , Flaviviridae/isolation & purification , Tick-Borne Diseases/virology , Adult , Aged , Animals , China/epidemiology , Communicable Diseases, Emerging/epidemiology , Fatigue/etiology , Female , Fever/etiology , Flaviviridae/classification , Flaviviridae/genetics , Flaviviridae/ultrastructure , Headache/etiology , Humans , Male , Microscopy, Electron , Middle Aged , Phylogeny , Reverse Transcriptase Polymerase Chain Reaction , Symptom Assessment , Tick-Borne Diseases/complications , Tick-Borne Diseases/epidemiology , Ticks/virology
2.
PLoS Pathog ; 12(10): e1005911, 2016 Oct.
Article in English | MEDLINE | ID: mdl-27737017

ABSTRACT

While novel picornaviruses are being discovered in rodents, their host range and pathogenicity are largely unknown. We identified two novel picornaviruses, rosavirus B from the street rat, Norway rat, and rosavirus C from five different wild rat species (chestnut spiny rat, greater bandicoot rat, Indochinese forest rat, roof rat and Coxing's white-bellied rat) in China. Analysis of 13 complete genome sequences showed that "Rosavirus B" and "Rosavirus C" represent two potentially novel picornavirus species infecting different rodents. Though being most closely related to rosavirus A, rosavirus B and C possessed distinct protease cleavage sites and variations in Yn-Xm-AUG sequence in 5'UTR and myristylation site in VP4. Anti-rosavirus B VP1 antibodies were detected in Norway rats, whereas anti-rosavirus C VP1 and neutralizing antibodies were detected in Indochinese forest rats and Coxing's white-bellied rats. While the highest prevalence was observed in Coxing's white-bellied rats by RT-PCR, the detection of rosavirus C from different rat species suggests potential interspecies transmission. Rosavirus C isolated from 3T3 cells causes multisystemic diseases in a mouse model, with high viral loads and positive viral antigen expression in organs of infected mice after oral or intracerebral inoculation. Histological examination revealed alveolar fluid exudation, interstitial infiltration, alveolar fluid exudate and wall thickening in lungs, and hepatocyte degeneration and lymphocytic/monocytic inflammatory infiltrates with giant cell formation in liver sections of sacrificed mice. Since rosavirus A2 has been detected in fecal samples of children, further studies should elucidate the pathogenicity and emergence potential of different rosaviruses.


Subject(s)
Picornaviridae Infections/veterinary , Picornaviridae/genetics , Animals , Base Sequence , Blotting, Western , China , Disease Models, Animal , Genome, Viral , Immunohistochemistry , Mice , Microscopy, Electron , Phylogeny , Picornaviridae/pathogenicity , Polymerase Chain Reaction , RNA, Viral/analysis , Rats
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