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The temporal dynamics and infectiousness of subpatent Plasmodium falciparum infections in relation to parasite density

Malaria infections occurring below the limit of detection of standard diagnostics are common in all endemic settings. However, key questions remain surrounding their contribution to sustaining transmission and whether they need to be detected and targeted to achieve malaria elimination. In this stud...

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Autores principales: Slater, Hannah C., Ross, Amanda, Felger, Ingrid, Hofmann, Natalie E., Robinson, Leanne, Cook, Jackie, Gonçalves, Bronner P., Björkman, Anders, Ouedraogo, Andre Lin, Morris, Ulrika, Msellem, Mwinyi, Koepfli, Cristian, Mueller, Ivo, Tadesse, Fitsum, Gadisa, Endalamaw, Das, Smita, Domingo, Gonzalo, Kapulu, Melissa, Midega, Janet, Owusu-Agyei, Seth, Nabet, Cécile, Piarroux, Renaud, Doumbo, Ogobara, Doumbo, Safiatou Niare, Koram, Kwadwo, Lucchi, Naomi, Udhayakumar, Venkatachalam, Mosha, Jacklin, Tiono, Alfred, Chandramohan, Daniel, Gosling, Roly, Mwingira, Felista, Sauerwein, Robert, Paul, Richard, Riley, Eleanor M, White, Nicholas J, Nosten, Francois, Imwong, Mallika, Bousema, Teun, Drakeley, Chris, Okell, Lucy C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6440965/
https://www.ncbi.nlm.nih.gov/pubmed/30926893
http://dx.doi.org/10.1038/s41467-019-09441-1
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author Slater, Hannah C.
Ross, Amanda
Felger, Ingrid
Hofmann, Natalie E.
Robinson, Leanne
Cook, Jackie
Gonçalves, Bronner P.
Björkman, Anders
Ouedraogo, Andre Lin
Morris, Ulrika
Msellem, Mwinyi
Koepfli, Cristian
Mueller, Ivo
Tadesse, Fitsum
Gadisa, Endalamaw
Das, Smita
Domingo, Gonzalo
Kapulu, Melissa
Midega, Janet
Owusu-Agyei, Seth
Nabet, Cécile
Piarroux, Renaud
Doumbo, Ogobara
Doumbo, Safiatou Niare
Koram, Kwadwo
Lucchi, Naomi
Udhayakumar, Venkatachalam
Mosha, Jacklin
Tiono, Alfred
Chandramohan, Daniel
Gosling, Roly
Mwingira, Felista
Sauerwein, Robert
Paul, Richard
Riley, Eleanor M
White, Nicholas J
Nosten, Francois
Imwong, Mallika
Bousema, Teun
Drakeley, Chris
Okell, Lucy C
author_facet Slater, Hannah C.
Ross, Amanda
Felger, Ingrid
Hofmann, Natalie E.
Robinson, Leanne
Cook, Jackie
Gonçalves, Bronner P.
Björkman, Anders
Ouedraogo, Andre Lin
Morris, Ulrika
Msellem, Mwinyi
Koepfli, Cristian
Mueller, Ivo
Tadesse, Fitsum
Gadisa, Endalamaw
Das, Smita
Domingo, Gonzalo
Kapulu, Melissa
Midega, Janet
Owusu-Agyei, Seth
Nabet, Cécile
Piarroux, Renaud
Doumbo, Ogobara
Doumbo, Safiatou Niare
Koram, Kwadwo
Lucchi, Naomi
Udhayakumar, Venkatachalam
Mosha, Jacklin
Tiono, Alfred
Chandramohan, Daniel
Gosling, Roly
Mwingira, Felista
Sauerwein, Robert
Paul, Richard
Riley, Eleanor M
White, Nicholas J
Nosten, Francois
Imwong, Mallika
Bousema, Teun
Drakeley, Chris
Okell, Lucy C
author_sort Slater, Hannah C.
collection PubMed
description Malaria infections occurring below the limit of detection of standard diagnostics are common in all endemic settings. However, key questions remain surrounding their contribution to sustaining transmission and whether they need to be detected and targeted to achieve malaria elimination. In this study we analyse a range of malaria datasets to quantify the density, detectability, course of infection and infectiousness of subpatent infections. Asymptomatically infected individuals have lower parasite densities on average in low transmission settings compared to individuals in higher transmission settings. In cohort studies, subpatent infections are found to be predictive of future periods of patent infection and in membrane feeding studies, individuals infected with subpatent asexual parasite densities are found to be approximately a third as infectious to mosquitoes as individuals with patent (asexual parasite) infection. These results indicate that subpatent infections contribute to the infectious reservoir, may be long lasting, and require more sensitive diagnostics to detect them in lower transmission settings.
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spelling pubmed-64409652019-04-01 The temporal dynamics and infectiousness of subpatent Plasmodium falciparum infections in relation to parasite density Slater, Hannah C. Ross, Amanda Felger, Ingrid Hofmann, Natalie E. Robinson, Leanne Cook, Jackie Gonçalves, Bronner P. Björkman, Anders Ouedraogo, Andre Lin Morris, Ulrika Msellem, Mwinyi Koepfli, Cristian Mueller, Ivo Tadesse, Fitsum Gadisa, Endalamaw Das, Smita Domingo, Gonzalo Kapulu, Melissa Midega, Janet Owusu-Agyei, Seth Nabet, Cécile Piarroux, Renaud Doumbo, Ogobara Doumbo, Safiatou Niare Koram, Kwadwo Lucchi, Naomi Udhayakumar, Venkatachalam Mosha, Jacklin Tiono, Alfred Chandramohan, Daniel Gosling, Roly Mwingira, Felista Sauerwein, Robert Paul, Richard Riley, Eleanor M White, Nicholas J Nosten, Francois Imwong, Mallika Bousema, Teun Drakeley, Chris Okell, Lucy C Nat Commun Article Malaria infections occurring below the limit of detection of standard diagnostics are common in all endemic settings. However, key questions remain surrounding their contribution to sustaining transmission and whether they need to be detected and targeted to achieve malaria elimination. In this study we analyse a range of malaria datasets to quantify the density, detectability, course of infection and infectiousness of subpatent infections. Asymptomatically infected individuals have lower parasite densities on average in low transmission settings compared to individuals in higher transmission settings. In cohort studies, subpatent infections are found to be predictive of future periods of patent infection and in membrane feeding studies, individuals infected with subpatent asexual parasite densities are found to be approximately a third as infectious to mosquitoes as individuals with patent (asexual parasite) infection. These results indicate that subpatent infections contribute to the infectious reservoir, may be long lasting, and require more sensitive diagnostics to detect them in lower transmission settings. Nature Publishing Group UK 2019-03-29 /pmc/articles/PMC6440965/ /pubmed/30926893 http://dx.doi.org/10.1038/s41467-019-09441-1 Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Slater, Hannah C.
Ross, Amanda
Felger, Ingrid
Hofmann, Natalie E.
Robinson, Leanne
Cook, Jackie
Gonçalves, Bronner P.
Björkman, Anders
Ouedraogo, Andre Lin
Morris, Ulrika
Msellem, Mwinyi
Koepfli, Cristian
Mueller, Ivo
Tadesse, Fitsum
Gadisa, Endalamaw
Das, Smita
Domingo, Gonzalo
Kapulu, Melissa
Midega, Janet
Owusu-Agyei, Seth
Nabet, Cécile
Piarroux, Renaud
Doumbo, Ogobara
Doumbo, Safiatou Niare
Koram, Kwadwo
Lucchi, Naomi
Udhayakumar, Venkatachalam
Mosha, Jacklin
Tiono, Alfred
Chandramohan, Daniel
Gosling, Roly
Mwingira, Felista
Sauerwein, Robert
Paul, Richard
Riley, Eleanor M
White, Nicholas J
Nosten, Francois
Imwong, Mallika
Bousema, Teun
Drakeley, Chris
Okell, Lucy C
The temporal dynamics and infectiousness of subpatent Plasmodium falciparum infections in relation to parasite density
title The temporal dynamics and infectiousness of subpatent Plasmodium falciparum infections in relation to parasite density
title_full The temporal dynamics and infectiousness of subpatent Plasmodium falciparum infections in relation to parasite density
title_fullStr The temporal dynamics and infectiousness of subpatent Plasmodium falciparum infections in relation to parasite density
title_full_unstemmed The temporal dynamics and infectiousness of subpatent Plasmodium falciparum infections in relation to parasite density
title_short The temporal dynamics and infectiousness of subpatent Plasmodium falciparum infections in relation to parasite density
title_sort temporal dynamics and infectiousness of subpatent plasmodium falciparum infections in relation to parasite density
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6440965/
https://www.ncbi.nlm.nih.gov/pubmed/30926893
http://dx.doi.org/10.1038/s41467-019-09441-1
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