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Escalation of Pyrethroid Resistance in the Malaria Vector Anopheles funestus Induces a Loss of Efficacy of Piperonyl Butoxide–Based Insecticide-Treated Nets in Mozambique

BACKGROUND: Insecticide resistance poses a serious threat to insecticide-based interventions in Africa. There is a fear that resistance escalation could jeopardize malaria control efforts. Monitoring of cases of aggravation of resistance intensity and its impact on the efficacy of control tools is c...

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Autores principales: Riveron, Jacob M, Huijben, Silvie, Tchapga, Williams, Tchouakui, Magellan, Wondji, Murielle J, Tchoupo, Micareme, Irving, Helen, Cuamba, Nelson, Maquina, Mara, Paaijmans, Krijn, Wondji, Charles S
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6603977/
https://www.ncbi.nlm.nih.gov/pubmed/30923819
http://dx.doi.org/10.1093/infdis/jiz139
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author Riveron, Jacob M
Huijben, Silvie
Tchapga, Williams
Tchouakui, Magellan
Wondji, Murielle J
Tchoupo, Micareme
Irving, Helen
Cuamba, Nelson
Maquina, Mara
Paaijmans, Krijn
Wondji, Charles S
author_facet Riveron, Jacob M
Huijben, Silvie
Tchapga, Williams
Tchouakui, Magellan
Wondji, Murielle J
Tchoupo, Micareme
Irving, Helen
Cuamba, Nelson
Maquina, Mara
Paaijmans, Krijn
Wondji, Charles S
author_sort Riveron, Jacob M
collection PubMed
description BACKGROUND: Insecticide resistance poses a serious threat to insecticide-based interventions in Africa. There is a fear that resistance escalation could jeopardize malaria control efforts. Monitoring of cases of aggravation of resistance intensity and its impact on the efficacy of control tools is crucial to predict consequences of resistance. METHODS: The resistance levels of an Anopheles funestus population from Palmeira, southern Mozambique, were characterized and their impact on the efficacy of various insecticide-treated nets established. RESULTS: A dramatic loss of efficacy of all long-lasting insecticidal nets (LLINs), including piperonyl butoxide (PBO)–based nets (Olyset Plus), was observed. This An. funestus population consistently (2016, 2017, and 2018) exhibited a high degree of pyrethroid resistance. Molecular analyses revealed that this resistance escalation was associated with a massive overexpression of the duplicated cytochrome P450 genes CYP6P9a and CYP6P9b, and also the fixation of the resistance CYP6P9a_R allele in this population in 2016 (100%) in contrast to 2002 (5%). However, the low recovery of susceptibility after PBO synergist assay suggests that other resistance mechanisms could be involved. CONCLUSIONS: The loss of efficacy of pyrethroid-based LLINs with and without PBO is a concern for the effectiveness of insecticide-based interventions, and action should be taken to prevent the spread of such super-resistance.
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spelling pubmed-66039772019-07-08 Escalation of Pyrethroid Resistance in the Malaria Vector Anopheles funestus Induces a Loss of Efficacy of Piperonyl Butoxide–Based Insecticide-Treated Nets in Mozambique Riveron, Jacob M Huijben, Silvie Tchapga, Williams Tchouakui, Magellan Wondji, Murielle J Tchoupo, Micareme Irving, Helen Cuamba, Nelson Maquina, Mara Paaijmans, Krijn Wondji, Charles S J Infect Dis Major Articles and Brief Reports BACKGROUND: Insecticide resistance poses a serious threat to insecticide-based interventions in Africa. There is a fear that resistance escalation could jeopardize malaria control efforts. Monitoring of cases of aggravation of resistance intensity and its impact on the efficacy of control tools is crucial to predict consequences of resistance. METHODS: The resistance levels of an Anopheles funestus population from Palmeira, southern Mozambique, were characterized and their impact on the efficacy of various insecticide-treated nets established. RESULTS: A dramatic loss of efficacy of all long-lasting insecticidal nets (LLINs), including piperonyl butoxide (PBO)–based nets (Olyset Plus), was observed. This An. funestus population consistently (2016, 2017, and 2018) exhibited a high degree of pyrethroid resistance. Molecular analyses revealed that this resistance escalation was associated with a massive overexpression of the duplicated cytochrome P450 genes CYP6P9a and CYP6P9b, and also the fixation of the resistance CYP6P9a_R allele in this population in 2016 (100%) in contrast to 2002 (5%). However, the low recovery of susceptibility after PBO synergist assay suggests that other resistance mechanisms could be involved. CONCLUSIONS: The loss of efficacy of pyrethroid-based LLINs with and without PBO is a concern for the effectiveness of insecticide-based interventions, and action should be taken to prevent the spread of such super-resistance. Oxford University Press 2019-08-01 2019-03-29 /pmc/articles/PMC6603977/ /pubmed/30923819 http://dx.doi.org/10.1093/infdis/jiz139 Text en © The Author(s) 2019. Published by Oxford University Press for the Infectious Diseases Society of America. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Major Articles and Brief Reports
Riveron, Jacob M
Huijben, Silvie
Tchapga, Williams
Tchouakui, Magellan
Wondji, Murielle J
Tchoupo, Micareme
Irving, Helen
Cuamba, Nelson
Maquina, Mara
Paaijmans, Krijn
Wondji, Charles S
Escalation of Pyrethroid Resistance in the Malaria Vector Anopheles funestus Induces a Loss of Efficacy of Piperonyl Butoxide–Based Insecticide-Treated Nets in Mozambique
title Escalation of Pyrethroid Resistance in the Malaria Vector Anopheles funestus Induces a Loss of Efficacy of Piperonyl Butoxide–Based Insecticide-Treated Nets in Mozambique
title_full Escalation of Pyrethroid Resistance in the Malaria Vector Anopheles funestus Induces a Loss of Efficacy of Piperonyl Butoxide–Based Insecticide-Treated Nets in Mozambique
title_fullStr Escalation of Pyrethroid Resistance in the Malaria Vector Anopheles funestus Induces a Loss of Efficacy of Piperonyl Butoxide–Based Insecticide-Treated Nets in Mozambique
title_full_unstemmed Escalation of Pyrethroid Resistance in the Malaria Vector Anopheles funestus Induces a Loss of Efficacy of Piperonyl Butoxide–Based Insecticide-Treated Nets in Mozambique
title_short Escalation of Pyrethroid Resistance in the Malaria Vector Anopheles funestus Induces a Loss of Efficacy of Piperonyl Butoxide–Based Insecticide-Treated Nets in Mozambique
title_sort escalation of pyrethroid resistance in the malaria vector anopheles funestus induces a loss of efficacy of piperonyl butoxide–based insecticide-treated nets in mozambique
topic Major Articles and Brief Reports
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6603977/
https://www.ncbi.nlm.nih.gov/pubmed/30923819
http://dx.doi.org/10.1093/infdis/jiz139
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