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A new WHO bottle bioassay method to assess the susceptibility of mosquito vectors to public health insecticides: results from a WHO-coordinated multi-centre study

BACKGROUND: The continued spread of insecticide resistance in mosquito vectors of malaria and arboviral diseases may lead to operational failure of insecticide-based interventions if resistance is not monitored and managed efficiently. This study aimed to develop and validate a new WHO glass bottle...

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Autores principales: Corbel, Vincent, Kont, Mara D., Ahumada, Martha Liliana, Andréo, Laura, Bayili, Bazoma, Bayili, Koama, Brooke, Basil, Pinto Caballero, Jesús A., Lambert, Ben, Churcher, Thomas S., Duchon, Stephane, Etang, Josiane, Flores, Adriana E., Gunasekaran, Kasinathan, Juntarajumnong, Waraporn, Kirby, Matt, Davies, Rachel, Lees, Rosemary Susan, Lenhart, Audrey, Lima, José Bento Pereira, Martins, Ademir J., Müller, Pie, N’Guessan, Raphael, Ngufor, Corine, Praulins, Giorgio, Quinones, Martha, Raghavendra, Kamaraju, Verma, Vaishali, Rus, Adanan Che, Samuel, Michael, Ying, Koou Sin, Sungvornyothin, Sungsit, Uragayala, Sreehari, Velayudhan, Raman, Yadav, Rajpal S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9863080/
https://www.ncbi.nlm.nih.gov/pubmed/36670470
http://dx.doi.org/10.1186/s13071-022-05554-7
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author Corbel, Vincent
Kont, Mara D.
Ahumada, Martha Liliana
Andréo, Laura
Bayili, Bazoma
Bayili, Koama
Brooke, Basil
Pinto Caballero, Jesús A.
Lambert, Ben
Churcher, Thomas S.
Duchon, Stephane
Etang, Josiane
Flores, Adriana E.
Gunasekaran, Kasinathan
Juntarajumnong, Waraporn
Kirby, Matt
Davies, Rachel
Lees, Rosemary Susan
Lenhart, Audrey
Lima, José Bento Pereira
Martins, Ademir J.
Müller, Pie
N’Guessan, Raphael
Ngufor, Corine
Praulins, Giorgio
Quinones, Martha
Raghavendra, Kamaraju
Verma, Vaishali
Rus, Adanan Che
Samuel, Michael
Ying, Koou Sin
Sungvornyothin, Sungsit
Uragayala, Sreehari
Velayudhan, Raman
Yadav, Rajpal S.
author_facet Corbel, Vincent
Kont, Mara D.
Ahumada, Martha Liliana
Andréo, Laura
Bayili, Bazoma
Bayili, Koama
Brooke, Basil
Pinto Caballero, Jesús A.
Lambert, Ben
Churcher, Thomas S.
Duchon, Stephane
Etang, Josiane
Flores, Adriana E.
Gunasekaran, Kasinathan
Juntarajumnong, Waraporn
Kirby, Matt
Davies, Rachel
Lees, Rosemary Susan
Lenhart, Audrey
Lima, José Bento Pereira
Martins, Ademir J.
Müller, Pie
N’Guessan, Raphael
Ngufor, Corine
Praulins, Giorgio
Quinones, Martha
Raghavendra, Kamaraju
Verma, Vaishali
Rus, Adanan Che
Samuel, Michael
Ying, Koou Sin
Sungvornyothin, Sungsit
Uragayala, Sreehari
Velayudhan, Raman
Yadav, Rajpal S.
author_sort Corbel, Vincent
collection PubMed
description BACKGROUND: The continued spread of insecticide resistance in mosquito vectors of malaria and arboviral diseases may lead to operational failure of insecticide-based interventions if resistance is not monitored and managed efficiently. This study aimed to develop and validate a new WHO glass bottle bioassay method as an alternative to the WHO standard insecticide tube test to monitor mosquito susceptibility to new public health insecticides with particular modes of action, physical properties or both. METHODS: A multi-centre study involving 21 laboratories worldwide generated data on the susceptibility of seven mosquito species (Aedes aegypti, Aedes albopictus, Anopheles gambiae sensu stricto [An. gambiae s.s.], Anopheles funestus, Anopheles stephensi, Anopheles minimus and Anopheles albimanus) to seven public health insecticides in five classes, including pyrethroids (metofluthrin, prallethrin and transfluthrin), neonicotinoids (clothianidin), pyrroles (chlorfenapyr), juvenile hormone mimics (pyriproxyfen) and butenolides (flupyradifurone), in glass bottle assays. The data were analysed using a Bayesian binomial model to determine the concentration–response curves for each insecticide–species combination and to assess the within-bioassay variability in the susceptibility endpoints, namely the concentration that kills 50% and 99% of the test population (LC(50) and LC(99), respectively) and the concentration that inhibits oviposition of the test population by 50% and 99% (OI(50) and OI(99)), to measure mortality and the sterilizing effect, respectively. RESULTS: Overall, about 200,000 mosquitoes were tested with the new bottle bioassay, and LC(50)/LC(99) or OI(50)/OI(99) values were determined for all insecticides. Variation was seen between laboratories in estimates for some mosquito species–insecticide combinations, while other test results were consistent. The variation was generally greater with transfluthrin and flupyradifurone than with the other compounds tested, especially against Anopheles species. Overall, the mean within-bioassay variability in mortality and oviposition inhibition were < 10% for most mosquito species-insecticide combinations. CONCLUSION: Our findings, based on the largest susceptibility dataset ever produced on mosquitoes, showed that the new WHO bottle bioassay is adequate for evaluating mosquito susceptibility to new and promising public health insecticides currently deployed for vector control. The datasets presented in this study have been used recently by the WHO to establish 17 new insecticide discriminating concentrations (DCs) for either Aedes spp. or Anopheles spp. The bottle bioassay and DCs can now be widely used to monitor baseline insecticide susceptibility of wild populations of vectors of malaria and Aedes-borne diseases worldwide. GRAPHICAL ABSTRACT: [Image: see text] SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1186/s13071-022-05554-7.
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spelling pubmed-98630802023-01-22 A new WHO bottle bioassay method to assess the susceptibility of mosquito vectors to public health insecticides: results from a WHO-coordinated multi-centre study Corbel, Vincent Kont, Mara D. Ahumada, Martha Liliana Andréo, Laura Bayili, Bazoma Bayili, Koama Brooke, Basil Pinto Caballero, Jesús A. Lambert, Ben Churcher, Thomas S. Duchon, Stephane Etang, Josiane Flores, Adriana E. Gunasekaran, Kasinathan Juntarajumnong, Waraporn Kirby, Matt Davies, Rachel Lees, Rosemary Susan Lenhart, Audrey Lima, José Bento Pereira Martins, Ademir J. Müller, Pie N’Guessan, Raphael Ngufor, Corine Praulins, Giorgio Quinones, Martha Raghavendra, Kamaraju Verma, Vaishali Rus, Adanan Che Samuel, Michael Ying, Koou Sin Sungvornyothin, Sungsit Uragayala, Sreehari Velayudhan, Raman Yadav, Rajpal S. Parasit Vectors Research BACKGROUND: The continued spread of insecticide resistance in mosquito vectors of malaria and arboviral diseases may lead to operational failure of insecticide-based interventions if resistance is not monitored and managed efficiently. This study aimed to develop and validate a new WHO glass bottle bioassay method as an alternative to the WHO standard insecticide tube test to monitor mosquito susceptibility to new public health insecticides with particular modes of action, physical properties or both. METHODS: A multi-centre study involving 21 laboratories worldwide generated data on the susceptibility of seven mosquito species (Aedes aegypti, Aedes albopictus, Anopheles gambiae sensu stricto [An. gambiae s.s.], Anopheles funestus, Anopheles stephensi, Anopheles minimus and Anopheles albimanus) to seven public health insecticides in five classes, including pyrethroids (metofluthrin, prallethrin and transfluthrin), neonicotinoids (clothianidin), pyrroles (chlorfenapyr), juvenile hormone mimics (pyriproxyfen) and butenolides (flupyradifurone), in glass bottle assays. The data were analysed using a Bayesian binomial model to determine the concentration–response curves for each insecticide–species combination and to assess the within-bioassay variability in the susceptibility endpoints, namely the concentration that kills 50% and 99% of the test population (LC(50) and LC(99), respectively) and the concentration that inhibits oviposition of the test population by 50% and 99% (OI(50) and OI(99)), to measure mortality and the sterilizing effect, respectively. RESULTS: Overall, about 200,000 mosquitoes were tested with the new bottle bioassay, and LC(50)/LC(99) or OI(50)/OI(99) values were determined for all insecticides. Variation was seen between laboratories in estimates for some mosquito species–insecticide combinations, while other test results were consistent. The variation was generally greater with transfluthrin and flupyradifurone than with the other compounds tested, especially against Anopheles species. Overall, the mean within-bioassay variability in mortality and oviposition inhibition were < 10% for most mosquito species-insecticide combinations. CONCLUSION: Our findings, based on the largest susceptibility dataset ever produced on mosquitoes, showed that the new WHO bottle bioassay is adequate for evaluating mosquito susceptibility to new and promising public health insecticides currently deployed for vector control. The datasets presented in this study have been used recently by the WHO to establish 17 new insecticide discriminating concentrations (DCs) for either Aedes spp. or Anopheles spp. The bottle bioassay and DCs can now be widely used to monitor baseline insecticide susceptibility of wild populations of vectors of malaria and Aedes-borne diseases worldwide. GRAPHICAL ABSTRACT: [Image: see text] SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1186/s13071-022-05554-7. BioMed Central 2023-01-20 /pmc/articles/PMC9863080/ /pubmed/36670470 http://dx.doi.org/10.1186/s13071-022-05554-7 Text en © World Health Organization 2023 https://creativecommons.org/licenses/by/4.0/Open AccessThis 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 licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence 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 licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) . The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/ (https://creativecommons.org/publicdomain/zero/1.0/) ) applies to the data made available in this article, unless otherwise stated in a credit line to the data.
spellingShingle Research
Corbel, Vincent
Kont, Mara D.
Ahumada, Martha Liliana
Andréo, Laura
Bayili, Bazoma
Bayili, Koama
Brooke, Basil
Pinto Caballero, Jesús A.
Lambert, Ben
Churcher, Thomas S.
Duchon, Stephane
Etang, Josiane
Flores, Adriana E.
Gunasekaran, Kasinathan
Juntarajumnong, Waraporn
Kirby, Matt
Davies, Rachel
Lees, Rosemary Susan
Lenhart, Audrey
Lima, José Bento Pereira
Martins, Ademir J.
Müller, Pie
N’Guessan, Raphael
Ngufor, Corine
Praulins, Giorgio
Quinones, Martha
Raghavendra, Kamaraju
Verma, Vaishali
Rus, Adanan Che
Samuel, Michael
Ying, Koou Sin
Sungvornyothin, Sungsit
Uragayala, Sreehari
Velayudhan, Raman
Yadav, Rajpal S.
A new WHO bottle bioassay method to assess the susceptibility of mosquito vectors to public health insecticides: results from a WHO-coordinated multi-centre study
title A new WHO bottle bioassay method to assess the susceptibility of mosquito vectors to public health insecticides: results from a WHO-coordinated multi-centre study
title_full A new WHO bottle bioassay method to assess the susceptibility of mosquito vectors to public health insecticides: results from a WHO-coordinated multi-centre study
title_fullStr A new WHO bottle bioassay method to assess the susceptibility of mosquito vectors to public health insecticides: results from a WHO-coordinated multi-centre study
title_full_unstemmed A new WHO bottle bioassay method to assess the susceptibility of mosquito vectors to public health insecticides: results from a WHO-coordinated multi-centre study
title_short A new WHO bottle bioassay method to assess the susceptibility of mosquito vectors to public health insecticides: results from a WHO-coordinated multi-centre study
title_sort new who bottle bioassay method to assess the susceptibility of mosquito vectors to public health insecticides: results from a who-coordinated multi-centre study
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9863080/
https://www.ncbi.nlm.nih.gov/pubmed/36670470
http://dx.doi.org/10.1186/s13071-022-05554-7
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