Insecticide resistance status of malaria vectors in Lao PDR.

Knowledge on insecticide resistance in Anopheles species is a basic requirement to guide malaria vector control programs. In Lao PDR, vector control relies on insecticide residual spraying (IRS) and impregnated bed-nets (ITNs) with the use of pyrethroids. Here, the susceptibility of Anopheles specie...

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Main Authors: Sébastien Marcombe, Julie Bobichon, Boutsady Somphong, Nothasin Phommavan, Santi Maithaviphet, Simone Nambanya, Vincent Corbel, Paul T Brey
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5402946?pdf=render
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spelling doaj-44c254a10cd24bc3964d77c421c754bb2020-11-24T20:50:15ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01124e017598410.1371/journal.pone.0175984Insecticide resistance status of malaria vectors in Lao PDR.Sébastien MarcombeJulie BobichonBoutsady SomphongNothasin PhommavanSanti MaithaviphetSimone NambanyaVincent CorbelPaul T BreyKnowledge on insecticide resistance in Anopheles species is a basic requirement to guide malaria vector control programs. In Lao PDR, vector control relies on insecticide residual spraying (IRS) and impregnated bed-nets (ITNs) with the use of pyrethroids. Here, the susceptibility of Anopheles species, including several malaria vectors (An. maculatus and An. minimus), to various insecticides was investigated in ten provinces of Lao PDR through a north-south transect. Bioassays were performed on field caught female mosquitoes using the standard WHO susceptibility tests with DDT (4%), deltamethrin (0.05%) and permethrin (0.75%). In addition, the DIIS6 region of the para-type sodium channel gene was amplified and sequenced to identify knockdown resistance mutations (kdr). Resistance to DDT and permethrin was detected in suspected malaria vectors, such as An. nivipes and An. philippinensis in Lao PDR. Resistance to the formerly used DDT was found in a population of An. maculatus s.l. from Luang Prabang province. No resistance to pyrethroids was found in primary vectors, indicating that these insecticides are still adequate for malaria vector control. However, high resistance levels to pyrethroids was found in-vector species and reduced susceptibility to permethrin in An. minimus and An. maculatus was reported in specific localities which raises concerns for pyrethroid-based control in the future. No kdr mutation was found in any of the resistant populations tested hence suggesting a probable role detoxification enzymes in resistance. This study highlights the necessity to continue the monitoring of insecticide susceptibility to early detect potential occurrence and/or migration of insecticide resistance in malaria vectors in Lao PDR.http://europepmc.org/articles/PMC5402946?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Sébastien Marcombe
Julie Bobichon
Boutsady Somphong
Nothasin Phommavan
Santi Maithaviphet
Simone Nambanya
Vincent Corbel
Paul T Brey
spellingShingle Sébastien Marcombe
Julie Bobichon
Boutsady Somphong
Nothasin Phommavan
Santi Maithaviphet
Simone Nambanya
Vincent Corbel
Paul T Brey
Insecticide resistance status of malaria vectors in Lao PDR.
PLoS ONE
author_facet Sébastien Marcombe
Julie Bobichon
Boutsady Somphong
Nothasin Phommavan
Santi Maithaviphet
Simone Nambanya
Vincent Corbel
Paul T Brey
author_sort Sébastien Marcombe
title Insecticide resistance status of malaria vectors in Lao PDR.
title_short Insecticide resistance status of malaria vectors in Lao PDR.
title_full Insecticide resistance status of malaria vectors in Lao PDR.
title_fullStr Insecticide resistance status of malaria vectors in Lao PDR.
title_full_unstemmed Insecticide resistance status of malaria vectors in Lao PDR.
title_sort insecticide resistance status of malaria vectors in lao pdr.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Knowledge on insecticide resistance in Anopheles species is a basic requirement to guide malaria vector control programs. In Lao PDR, vector control relies on insecticide residual spraying (IRS) and impregnated bed-nets (ITNs) with the use of pyrethroids. Here, the susceptibility of Anopheles species, including several malaria vectors (An. maculatus and An. minimus), to various insecticides was investigated in ten provinces of Lao PDR through a north-south transect. Bioassays were performed on field caught female mosquitoes using the standard WHO susceptibility tests with DDT (4%), deltamethrin (0.05%) and permethrin (0.75%). In addition, the DIIS6 region of the para-type sodium channel gene was amplified and sequenced to identify knockdown resistance mutations (kdr). Resistance to DDT and permethrin was detected in suspected malaria vectors, such as An. nivipes and An. philippinensis in Lao PDR. Resistance to the formerly used DDT was found in a population of An. maculatus s.l. from Luang Prabang province. No resistance to pyrethroids was found in primary vectors, indicating that these insecticides are still adequate for malaria vector control. However, high resistance levels to pyrethroids was found in-vector species and reduced susceptibility to permethrin in An. minimus and An. maculatus was reported in specific localities which raises concerns for pyrethroid-based control in the future. No kdr mutation was found in any of the resistant populations tested hence suggesting a probable role detoxification enzymes in resistance. This study highlights the necessity to continue the monitoring of insecticide susceptibility to early detect potential occurrence and/or migration of insecticide resistance in malaria vectors in Lao PDR.
url http://europepmc.org/articles/PMC5402946?pdf=render
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