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1.
Rev. Soc. Bras. Med. Trop ; 54: e0687-2020, 2021. graf
Article in English | LILACS | ID: biblio-1155578

ABSTRACT

Abstract INTRODUCTION: In Brazil, West Nile virus (WNV) was first detected, in 2018, in horses with neurological disease. AIM: We report the first case of WNV infection in a horse from Ceará state and the complete genome sequence of an isolate from Espírito Santo state. Both infections occurred in 2019. METHODS: WNV was isolated from the tissues of a horse with neurological signs in Espírito Santo and sequenced by MiSeq. RESULTS: Phylogenetic analysis revealed that the isolate belongs to lineage 1a, clustering with the NY99 strain, a strain that has not circulated in the USA since 2005. CONCLUSIONS: Our findings reinforce the hypothesis that WNV has been silently circulating in Brazil for many years.


Subject(s)
Animals , West Nile Fever/diagnosis , West Nile Fever/veterinary , West Nile virus/genetics , Horse Diseases , Phylogeny , Brazil , Horses
2.
Rev. Soc. Bras. Med. Trop ; 52: e20190089, 2019. graf
Article in English | LILACS | ID: biblio-990437

ABSTRACT

Abstract Emerging arthropod-borne viruses (arboviruses), such as chikungunya and Zika viruses, are a major threat to public health in countries like Brazil where biodiversity is high and medical care is sometimes precarious. West Nile fever is a disease caused by the West Nile Virus (WNV), an RNA virus belonging to the Flaviviridae family. It is transmitted by infected mosquitoes to numerous animals like birds, reptiles and mammals, including human and non-human primates. In the last decade, the number of reported cases of WNV infection in humans and animals has increased in the Americas. Circulation of WNV in forests and rural areas in Brazil has been detected based on serological surveys and, in 2014, the first case of West Nile fever was confirmed in a patient from Piauí State. In 2018, the virus was isolated for the first time from a horse from a rural area in the state of Espírito Santo presenting with a neurological disorder; this raises the possibility that other cases of WNV encephalitis may have occurred without clinical recognition and without laboratory diagnosis by specific assays. The imminent WNV outbreak poses a challenge for Brazilian clinicians and researchers. In this review, we summarize the basic biological and ecological characteristics of this virus and the clinical presentation and treatment of febrile illnesses caused by WNV. We also discuss the epidemiological aspects, prophylaxis of WNV infections, and monitoring strategies that could be applied in the possibility of a WNV outbreak in Brazil.


Subject(s)
Humans , Animals , West Nile Fever/transmission , West Nile Fever/epidemiology , Brazil/epidemiology , Communicable Diseases, Emerging/transmission , Communicable Diseases, Emerging/epidemiology , Epidemics
3.
Mem. Inst. Oswaldo Cruz ; 109(1): 38-50, 02/2014. tab, graf
Article in English | LILACS | ID: lil-703647

ABSTRACT

Transcripts similar to those that encode the nonstructural (NS) proteins NS3 and NS5 from flaviviruses were found in a salivary gland (SG) complementary DNA (cDNA) library from the cattle tick Rhipicephalus microplus. Tick extracts were cultured with cells to enable the isolation of viruses capable of replicating in cultured invertebrate and vertebrate cells. Deep sequencing of the viral RNA isolated from culture supernatants provided the complete coding sequences for the NS3 and NS5 proteins and their molecular characterisation confirmed similarity with the NS3 and NS5 sequences from other flaviviruses. Despite this similarity, phylogenetic analyses revealed that this potentially novel virus may be a highly divergent member of the genus Flavivirus. Interestingly, we detected the divergent NS3 and NS5 sequences in ticks collected from several dairy farms widely distributed throughout three regions of Brazil. This is the first report of flavivirus-like transcripts in R. microplus ticks. This novel virus is a potential arbovirus because it replicated in arthropod and mammalian cells; furthermore, it was detected in a cDNA library from tick SGs and therefore may be present in tick saliva. It is important to determine whether and by what means this potential virus is transmissible and to monitor the virus as a potential emerging tick-borne zoonotic pathogen.


Subject(s)
Animals , Cattle , Flavivirus/chemistry , RNA, Viral/isolation & purification , Rhipicephalus/virology , Viral Nonstructural Proteins/chemistry , Brazil , Conserved Sequence/genetics , Flavivirus/classification , Flavivirus/isolation & purification , Gene Library , Hydrophobic and Hydrophilic Interactions , Phylogeny , Polymerase Chain Reaction , RNA Helicases/chemistry , Sequence Alignment/statistics & numerical data , Sequence Analysis, Protein/methods , Serine Endopeptidases/chemistry , Tissue Extracts/analysis , Transcriptome/genetics
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