Fast surveillance response reveals the introduction of a new yellow fever virus sub-lineage in 2021, in Minas Gerais, Brazil
BACKGROUND In Brazil, the yellow fever virus (YFV) is maintained in a sylvatic cycle involving wild mosquitoes and non-human primates (NHPs). The virus is endemic to the Amazon region; however, waves of epidemic expansion reaching other Brazilian states sporadically occur, eventually causing spillovers to humans. OBJECTIVES To report a surveillance effort that led to the first confirmation of YFV in NHPs in the state of Minas Gerais (MG), Southeast region, in 2021. METHODS A surveillance network was created, encompassing the technology of smartphone applications and coordinated actions of several research institutions and health services to monitor and investigate NHP epizootics. FINDINGS When alerts were spread through the network, samples from NHPs were collected and YFV infection confirmed by reverse transcription-quantitative polymerase chain reaction (RT-qPCR) and genome sequencing at an interval of only 10 days. Near-complete genomes were generated using the Nanopore MinION sequencer. Phylogenetic analysis indicated that viral genomes were related to the South American genotype I, clustering with a genome detected in the Amazon region (state of Pará) in 2017, named YFVPA/MG sub-lineage. Fast YFV confirmation potentialised vaccination campaigns. MAIN CONCLUSIONS A new YFV introduction was detected in MG 6 years after the beginning of the major outbreak reported in the state (2015-2018). The YFV strain was not related to the sub-lineages previously reported in MG. No human cases have been reported, suggesting the importance of coordinated surveillance of NHPs using available technologies and supporting laboratories to ensure a quick response and implementation of contingency measures to avoid YFV spillover to humans.
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Instituto Oswaldo Cruz, Ministério da Saúde
2022
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oai:scielo:S0074-027620220001011342022-11-29Fast surveillance response reveals the introduction of a new yellow fever virus sub-lineage in 2021, in Minas Gerais, BrazilAndrade,Miguel SouzaCampos,Fabrício SouzaOliveira,Cirilo Henrique deOliveira,Ramon SilvaCampos,Aline Alves ScarpelliniAlmeida,Marco Antônio Barreto deFonseca,Vagner de SouzaSimonini-Teixeira,DaniloSevá,Anaiá da PaixãoTemponi,Andrea Oliveira DiasMagalhães,Fernando MariaChaves,Danielle Costa CapistranoPereira,Maira AlvesLamounier,Ludmila OliveiraMenezes,Givaldo Gomes deAquino-Teixeira,Sandy MicaeleGonçalves-dos-Santos,Maria EduardaBernal-Valle,SofíaMüller,Nicolas Felipe DrummCardoso,Jader da CruzSantos,Edmilson dosMares-Guia,Maria AngélicaAlbuquerque,George RêgoRomano,Alessandro Pecego MartinsFranco,Ana CláudiaRibeiro,Bergmann MoraisRoehe,Paulo MichelAbreu,Filipe Vieira Santos de yellow fever virus Arbovirus Flavivirus non-human primate epizootic smartphone MinION BACKGROUND In Brazil, the yellow fever virus (YFV) is maintained in a sylvatic cycle involving wild mosquitoes and non-human primates (NHPs). The virus is endemic to the Amazon region; however, waves of epidemic expansion reaching other Brazilian states sporadically occur, eventually causing spillovers to humans. OBJECTIVES To report a surveillance effort that led to the first confirmation of YFV in NHPs in the state of Minas Gerais (MG), Southeast region, in 2021. METHODS A surveillance network was created, encompassing the technology of smartphone applications and coordinated actions of several research institutions and health services to monitor and investigate NHP epizootics. FINDINGS When alerts were spread through the network, samples from NHPs were collected and YFV infection confirmed by reverse transcription-quantitative polymerase chain reaction (RT-qPCR) and genome sequencing at an interval of only 10 days. Near-complete genomes were generated using the Nanopore MinION sequencer. Phylogenetic analysis indicated that viral genomes were related to the South American genotype I, clustering with a genome detected in the Amazon region (state of Pará) in 2017, named YFVPA/MG sub-lineage. Fast YFV confirmation potentialised vaccination campaigns. MAIN CONCLUSIONS A new YFV introduction was detected in MG 6 years after the beginning of the major outbreak reported in the state (2015-2018). The YFV strain was not related to the sub-lineages previously reported in MG. No human cases have been reported, suggesting the importance of coordinated surveillance of NHPs using available technologies and supporting laboratories to ensure a quick response and implementation of contingency measures to avoid YFV spillover to humans.info:eu-repo/semantics/openAccessInstituto Oswaldo Cruz, Ministério da SaúdeMemórias do Instituto Oswaldo Cruz v.117 20222022-01-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S0074-02762022000101134en10.1590/0074-02760220127 |
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Andrade,Miguel Souza Campos,Fabrício Souza Oliveira,Cirilo Henrique de Oliveira,Ramon Silva Campos,Aline Alves Scarpellini Almeida,Marco Antônio Barreto de Fonseca,Vagner de Souza Simonini-Teixeira,Danilo Sevá,Anaiá da Paixão Temponi,Andrea Oliveira Dias Magalhães,Fernando Maria Chaves,Danielle Costa Capistrano Pereira,Maira Alves Lamounier,Ludmila Oliveira Menezes,Givaldo Gomes de Aquino-Teixeira,Sandy Micaele Gonçalves-dos-Santos,Maria Eduarda Bernal-Valle,Sofía Müller,Nicolas Felipe Drumm Cardoso,Jader da Cruz Santos,Edmilson dos Mares-Guia,Maria Angélica Albuquerque,George Rêgo Romano,Alessandro Pecego Martins Franco,Ana Cláudia Ribeiro,Bergmann Morais Roehe,Paulo Michel Abreu,Filipe Vieira Santos de |
spellingShingle |
Andrade,Miguel Souza Campos,Fabrício Souza Oliveira,Cirilo Henrique de Oliveira,Ramon Silva Campos,Aline Alves Scarpellini Almeida,Marco Antônio Barreto de Fonseca,Vagner de Souza Simonini-Teixeira,Danilo Sevá,Anaiá da Paixão Temponi,Andrea Oliveira Dias Magalhães,Fernando Maria Chaves,Danielle Costa Capistrano Pereira,Maira Alves Lamounier,Ludmila Oliveira Menezes,Givaldo Gomes de Aquino-Teixeira,Sandy Micaele Gonçalves-dos-Santos,Maria Eduarda Bernal-Valle,Sofía Müller,Nicolas Felipe Drumm Cardoso,Jader da Cruz Santos,Edmilson dos Mares-Guia,Maria Angélica Albuquerque,George Rêgo Romano,Alessandro Pecego Martins Franco,Ana Cláudia Ribeiro,Bergmann Morais Roehe,Paulo Michel Abreu,Filipe Vieira Santos de Fast surveillance response reveals the introduction of a new yellow fever virus sub-lineage in 2021, in Minas Gerais, Brazil |
author_facet |
Andrade,Miguel Souza Campos,Fabrício Souza Oliveira,Cirilo Henrique de Oliveira,Ramon Silva Campos,Aline Alves Scarpellini Almeida,Marco Antônio Barreto de Fonseca,Vagner de Souza Simonini-Teixeira,Danilo Sevá,Anaiá da Paixão Temponi,Andrea Oliveira Dias Magalhães,Fernando Maria Chaves,Danielle Costa Capistrano Pereira,Maira Alves Lamounier,Ludmila Oliveira Menezes,Givaldo Gomes de Aquino-Teixeira,Sandy Micaele Gonçalves-dos-Santos,Maria Eduarda Bernal-Valle,Sofía Müller,Nicolas Felipe Drumm Cardoso,Jader da Cruz Santos,Edmilson dos Mares-Guia,Maria Angélica Albuquerque,George Rêgo Romano,Alessandro Pecego Martins Franco,Ana Cláudia Ribeiro,Bergmann Morais Roehe,Paulo Michel Abreu,Filipe Vieira Santos de |
author_sort |
Andrade,Miguel Souza |
title |
Fast surveillance response reveals the introduction of a new yellow fever virus sub-lineage in 2021, in Minas Gerais, Brazil |
title_short |
Fast surveillance response reveals the introduction of a new yellow fever virus sub-lineage in 2021, in Minas Gerais, Brazil |
title_full |
Fast surveillance response reveals the introduction of a new yellow fever virus sub-lineage in 2021, in Minas Gerais, Brazil |
title_fullStr |
Fast surveillance response reveals the introduction of a new yellow fever virus sub-lineage in 2021, in Minas Gerais, Brazil |
title_full_unstemmed |
Fast surveillance response reveals the introduction of a new yellow fever virus sub-lineage in 2021, in Minas Gerais, Brazil |
title_sort |
fast surveillance response reveals the introduction of a new yellow fever virus sub-lineage in 2021, in minas gerais, brazil |
description |
BACKGROUND In Brazil, the yellow fever virus (YFV) is maintained in a sylvatic cycle involving wild mosquitoes and non-human primates (NHPs). The virus is endemic to the Amazon region; however, waves of epidemic expansion reaching other Brazilian states sporadically occur, eventually causing spillovers to humans. OBJECTIVES To report a surveillance effort that led to the first confirmation of YFV in NHPs in the state of Minas Gerais (MG), Southeast region, in 2021. METHODS A surveillance network was created, encompassing the technology of smartphone applications and coordinated actions of several research institutions and health services to monitor and investigate NHP epizootics. FINDINGS When alerts were spread through the network, samples from NHPs were collected and YFV infection confirmed by reverse transcription-quantitative polymerase chain reaction (RT-qPCR) and genome sequencing at an interval of only 10 days. Near-complete genomes were generated using the Nanopore MinION sequencer. Phylogenetic analysis indicated that viral genomes were related to the South American genotype I, clustering with a genome detected in the Amazon region (state of Pará) in 2017, named YFVPA/MG sub-lineage. Fast YFV confirmation potentialised vaccination campaigns. MAIN CONCLUSIONS A new YFV introduction was detected in MG 6 years after the beginning of the major outbreak reported in the state (2015-2018). The YFV strain was not related to the sub-lineages previously reported in MG. No human cases have been reported, suggesting the importance of coordinated surveillance of NHPs using available technologies and supporting laboratories to ensure a quick response and implementation of contingency measures to avoid YFV spillover to humans. |
publisher |
Instituto Oswaldo Cruz, Ministério da Saúde |
publishDate |
2022 |
url |
http://old.scielo.br/scielo.php?script=sci_arttext&pid=S0074-02762022000101134 |
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