期刊论文详细信息
Malaria Journal
Status of insecticide resistance in Anopheles mosquitoes in Ubon Ratchathani province, Northeastern Thailand
Research
Kanutcharee Thanispong1  Nattapol Marasri2  Anchana Sumarnrote2  Theeraphap Chareonviriyaphap2  Bénédicte Fustec3  Vincent Corbel3  Hans J. Overgaard4 
[1] Bureau of Vector-borne Disease, Department of Disease Control, Ministry of Public Health, Nonthaburi, Thailand;Department of Entomology, Faculty of Agriculture, Kasetsart University, Bangkok, Thailand;Department of Entomology, Faculty of Agriculture, Kasetsart University, Bangkok, Thailand;Maladies Infectieuses et Vecteurs, Ecologie, Génétique, Evolution et Contrôle (MIVEGEC), Institut de Recherche pour le Développement (IRD), Montpellier, France;Department of Entomology, Faculty of Agriculture, Kasetsart University, Bangkok, Thailand;Maladies Infectieuses et Vecteurs, Ecologie, Génétique, Evolution et Contrôle (MIVEGEC), Institut de Recherche pour le Développement (IRD), Montpellier, France;Department of Mathematical Sciences and Technology, Norwegian University of Life Sciences, Ås, Norway;
关键词: Malaria;    Vectors;    Anopheles;    Pyrethroids;    DDT;    Resistance;    Synergists;    kdr;   
DOI  :  10.1186/s12936-017-1948-z
 received in 2017-02-03, accepted in 2017-07-20,  发布年份 2017
来源: Springer
PDF
【 摘 要 】

BackgroundMalaria is common in hilly, forested areas along national borders in Southeast Asia. Insecticide resistance in malaria vectors has been detected in a few countries in the Greater Mekong sub-region (GMS), representing a threat to malaria control and prevention. This study aims to determine the insecticide resistance status of Anopheles mosquitoes in Ubon Ratchathani province, northeastern Thailand, where increasing number of malaria cases were reported recently.MethodsMosquitoes were collected in 2013–2015 using human landing and cattle bait collections in six sites during both the rainy and dry seasons. Mosquitoes were first morphologically identified to species and their susceptibility status to deltamethrin (0.05%), permethrin (0.75%) and DDT (4%) investigated, according to WHO guidelines. Bioassays with the synergists PBO and DEF were carried out to address the role of detoxifying enzymes in insecticide resistance. DNA sequencing of a fragment of the voltage-gated sodium channel gene was carried out to detect knock-down resistance (kdr) substitutions at position 1014 in resistant species.ResultsDue to low vector abundance, complete bioassays (n ≥ 100 mosquitoes) were only achieved for Anopheles hyrcanus s.l., which was resistant to all insecticides tested (mortality ranged from 45 to 87%). Suspected resistance to DDT was found in Anopheles barbirostris s.l. (mortality 69%), but it was susceptible to deltamethrin (mortality 97–100%) and permethrin (mortality 100%). Although insufficient number of primary vectors were collected, results showed that Anopheles dirus s.l. and Anopheles maculatus s.l. were susceptible to deltamethrin (mortality 100%). Anopheles nivipes and Anopheles philippinensis were susceptible to all three insecticides. PBO significantly increased mortality to deltamethrin and permethrin in pyrethroid-resistant An. hyrcanus s.l. None of the sequenced specimens presented the L1014F or L1014S mutation.DiscussionThis study shows that insecticide resistance is present in potential malaria vectors in northeastern Thailand. The absence of kdr mutations in all Anopheles species tested suggests that metabolic resistance is the main mechanism of pyrethroid resistance. This study provides new findings about insecticide susceptibility status of potential malaria vectors in northeastern Thailand that are deemed important to guide malaria vector control.

【 授权许可】

CC BY   
© The Author(s) 2017

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