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Precision Tracing of Household Dengue Spread Using Inter- and Intra-Host Viral Variation Data, Kamphaeng Phet, Thailand

Dengue control approaches are best informed by granular spatial epidemiology of these viruses, yet reconstruction of inter- and intra-household transmissions is limited when analyzing case count, serologic, or genomic consensus sequence data. To determine viral spread on a finer spatial scale, we ex...

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Autores principales: Berry, Irina Maljkovic, Melendrez, Melanie C., Pollett, Simon, Figueroa, Katherine, Buddhari, Darunee, Klungthong, Chonticha, Nisalak, Ananda, Panciera, Michael, Thaisomboonsuk, Butsaya, Li, Tao, Vallard, Tyghe G., Macareo, Louis, Yoon, In-Kyu, Thomas, Stephen J., Endy, Timothy, Jarman, Richard G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Centers for Disease Control and Prevention 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8153871/
https://www.ncbi.nlm.nih.gov/pubmed/34013878
http://dx.doi.org/10.3201/eid2706.204323
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author Berry, Irina Maljkovic
Melendrez, Melanie C.
Pollett, Simon
Figueroa, Katherine
Buddhari, Darunee
Klungthong, Chonticha
Nisalak, Ananda
Panciera, Michael
Thaisomboonsuk, Butsaya
Li, Tao
Vallard, Tyghe G.
Macareo, Louis
Yoon, In-Kyu
Thomas, Stephen J.
Endy, Timothy
Jarman, Richard G.
author_facet Berry, Irina Maljkovic
Melendrez, Melanie C.
Pollett, Simon
Figueroa, Katherine
Buddhari, Darunee
Klungthong, Chonticha
Nisalak, Ananda
Panciera, Michael
Thaisomboonsuk, Butsaya
Li, Tao
Vallard, Tyghe G.
Macareo, Louis
Yoon, In-Kyu
Thomas, Stephen J.
Endy, Timothy
Jarman, Richard G.
author_sort Berry, Irina Maljkovic
collection PubMed
description Dengue control approaches are best informed by granular spatial epidemiology of these viruses, yet reconstruction of inter- and intra-household transmissions is limited when analyzing case count, serologic, or genomic consensus sequence data. To determine viral spread on a finer spatial scale, we extended phylogenomic discrete trait analyses to reconstructions of house-to-house transmissions within a prospective cluster study in Kamphaeng Phet, Thailand. For additional resolution and transmission confirmation, we mapped dengue intra-host single nucleotide variants on the taxa of these time-scaled phylogenies. This approach confirmed 19 household transmissions and revealed that dengue disperses an average of 70 m per day between households in these communities. We describe an evolutionary biology framework for the resolution of dengue transmissions that cannot be differentiated based on epidemiologic and consensus genome data alone. This framework can be used as a public health tool to inform control approaches and enable precise tracing of dengue transmissions.
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spelling pubmed-81538712021-06-08 Precision Tracing of Household Dengue Spread Using Inter- and Intra-Host Viral Variation Data, Kamphaeng Phet, Thailand Berry, Irina Maljkovic Melendrez, Melanie C. Pollett, Simon Figueroa, Katherine Buddhari, Darunee Klungthong, Chonticha Nisalak, Ananda Panciera, Michael Thaisomboonsuk, Butsaya Li, Tao Vallard, Tyghe G. Macareo, Louis Yoon, In-Kyu Thomas, Stephen J. Endy, Timothy Jarman, Richard G. Emerg Infect Dis Research Dengue control approaches are best informed by granular spatial epidemiology of these viruses, yet reconstruction of inter- and intra-household transmissions is limited when analyzing case count, serologic, or genomic consensus sequence data. To determine viral spread on a finer spatial scale, we extended phylogenomic discrete trait analyses to reconstructions of house-to-house transmissions within a prospective cluster study in Kamphaeng Phet, Thailand. For additional resolution and transmission confirmation, we mapped dengue intra-host single nucleotide variants on the taxa of these time-scaled phylogenies. This approach confirmed 19 household transmissions and revealed that dengue disperses an average of 70 m per day between households in these communities. We describe an evolutionary biology framework for the resolution of dengue transmissions that cannot be differentiated based on epidemiologic and consensus genome data alone. This framework can be used as a public health tool to inform control approaches and enable precise tracing of dengue transmissions. Centers for Disease Control and Prevention 2021-06 /pmc/articles/PMC8153871/ /pubmed/34013878 http://dx.doi.org/10.3201/eid2706.204323 Text en https://creativecommons.org/licenses/by/4.0/This is a publication of the U.S. Government. This publication is in the public domain and is therefore without copyright. All text from this work may be reprinted freely. Use of these materials should be properly cited.
spellingShingle Research
Berry, Irina Maljkovic
Melendrez, Melanie C.
Pollett, Simon
Figueroa, Katherine
Buddhari, Darunee
Klungthong, Chonticha
Nisalak, Ananda
Panciera, Michael
Thaisomboonsuk, Butsaya
Li, Tao
Vallard, Tyghe G.
Macareo, Louis
Yoon, In-Kyu
Thomas, Stephen J.
Endy, Timothy
Jarman, Richard G.
Precision Tracing of Household Dengue Spread Using Inter- and Intra-Host Viral Variation Data, Kamphaeng Phet, Thailand
title Precision Tracing of Household Dengue Spread Using Inter- and Intra-Host Viral Variation Data, Kamphaeng Phet, Thailand
title_full Precision Tracing of Household Dengue Spread Using Inter- and Intra-Host Viral Variation Data, Kamphaeng Phet, Thailand
title_fullStr Precision Tracing of Household Dengue Spread Using Inter- and Intra-Host Viral Variation Data, Kamphaeng Phet, Thailand
title_full_unstemmed Precision Tracing of Household Dengue Spread Using Inter- and Intra-Host Viral Variation Data, Kamphaeng Phet, Thailand
title_short Precision Tracing of Household Dengue Spread Using Inter- and Intra-Host Viral Variation Data, Kamphaeng Phet, Thailand
title_sort precision tracing of household dengue spread using inter- and intra-host viral variation data, kamphaeng phet, thailand
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8153871/
https://www.ncbi.nlm.nih.gov/pubmed/34013878
http://dx.doi.org/10.3201/eid2706.204323
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