Pyrethroid-piperonyl butoxide (PBO) nets reduce the efficacy of indoor residual spraying with pirimiphos-methyl against pyrethroid-resistant malaria vectors
暂无分享,去创建一个
Thomas Syme | C. Ngufor | Augustin Fongnikin | Martial Gbegbo | Damien Todjinou | Dorothy Obuobi | A. Agbevo
[1] C. Fornadel,et al. Incremental impact on malaria incidence following indoor residual spraying in a highly endemic area with high standard ITN access in Mozambique: results from a cluster‐randomized study , 2021, Malaria journal.
[2] M. Rowland,et al. Which indoor residual spraying insecticide best complements standard pyrethroid long-lasting insecticidal nets for improved control of pyrethroid resistant malaria vectors? , 2021, PloS one.
[3] C. Fornadel,et al. Reduced exposure to malaria vectors following indoor residual spraying of pirimiphos-methyl in a high-burden district of rural Mozambique with high ownership of long-lasting insecticidal nets: entomological surveillance results from a cluster-randomized trial , 2021, Malaria journal.
[4] C. Fornadel,et al. Rapid reduction of malaria transmission following the introduction of indoor residual spraying in previously unsprayed districts: an observational analysis of Mopti Region, Mali, in 2017 , 2020, Malaria journal.
[5] C. Fornadel,et al. Combining next-generation indoor residual spraying and drug-based malaria control strategies: observational evidence of a combined effect in Mali , 2020, Malaria Journal.
[6] M. Rowland,et al. Indoor spraying with chlorfenapyr (a pyrrole insecticide) provides residual control of pyrethroid-resistant malaria vectors in southern Benin , 2020, Malaria Journal.
[7] C. Fornadel,et al. An observational analysis of the impact of indoor residual spraying in Northern, Upper East, and Upper West Regions of Ghana: 2014 through 2017 , 2020, Malaria Journal.
[8] C. Fornadel,et al. An observational analysis of the impact of indoor residual spraying in Northern, Upper East, and Upper West Regions of Ghana: 2014 through 2017 , 2020, Malaria Journal.
[9] J. Hemingway,et al. Effect of long-lasting insecticidal nets with and without piperonyl butoxide on malaria indicators in Uganda (LLINEUP): a pragmatic, cluster-randomised trial embedded in a national LLIN distribution campaign , 2020, The Lancet.
[10] S. Irish,et al. Susceptibility of Anopheles gambiae from Côte d’Ivoire to insecticides used on insecticide-treated nets: evaluating the additional entomological impact of piperonyl butoxide and chlorfenapyr , 2020, Malaria journal.
[11] Luis Alfredo Moctezuma,et al. Multi-objective optimization for EEG channel selection and accurate intruder detection in an EEG-based subject identification system , 2020, Scientific Reports.
[12] C. Fornadel,et al. Impact of indoor residual spraying with pirimiphos-methyl (Actellic 300CS) on entomological indicators of transmission and malaria case burden in Migori County, western Kenya , 2020, Scientific Reports.
[13] C. Wondji,et al. An Experimental Hut Evaluation of PBO-Based and Pyrethroid-Only Nets against the Malaria Vector Anopheles funestus Reveals a Loss of Bed Nets Efficacy Associated with GSTe2 Metabolic Resistance , 2020, Genes.
[14] M. Mildner,et al. Re-epithelialization and immune cell behaviour in an ex vivo human skin model , 2020, Scientific Reports.
[15] P. Gething,et al. Mapping trends in insecticide resistance phenotypes in African malaria vectors , 2020, bioRxiv.
[16] David M. Shackleford,et al. An in vitro toolbox to accelerate anti-malarial drug discovery and development , 2020, Malaria Journal.
[17] C. Moyes,et al. Indoor residual spraying for malaria control in sub-Saharan Africa 1997 to 2017: an adjusted retrospective analysis , 2019, Malaria Journal.
[18] A. Diabaté,et al. Experimental hut evaluation of DawaPlus 3.0 LN and DawaPlus 4.0 LN treated with deltamethrin and PBO against free-flying populations of Anopheles gambiae s.l. in Vallée du Kou, Burkina Faso , 2019, PloS one.
[19] M. Akogbeto,et al. Efficacy of Actellic 300 CS-based indoor residual spraying on key entomological indicators of malaria transmission in Alibori and Donga, two regions of northern Benin , 2019, Parasites & Vectors.
[20] M. Paine,et al. Cross-resistance profiles of malaria mosquito P450s associated with pyrethroid resistance against WHO insecticides. , 2019, Pesticide biochemistry and physiology.
[21] H. Ranson,et al. Piperonyl butoxide (PBO) combined with pyrethroids in insecticide‐treated nets to prevent malaria in Africa , 2018, The Cochrane database of systematic reviews.
[22] Immo Kleinschmidt,et al. Effectiveness of a long-lasting piperonyl butoxide-treated insecticidal net and indoor residual spray interventions, separately and together, against malaria transmitted by pyrethroid-resistant mosquitoes: a cluster, randomised controlled, two-by-two factorial design trial , 2018, The Lancet.
[23] C. Fornadel,et al. A village level cluster-randomized entomological evaluation of combination long-lasting insecticidal nets containing pyrethroid plus PBO synergist in Southern Mali , 2017, Malaria Journal.
[24] M. Rowland,et al. Which intervention is better for malaria vector control: insecticide mixture long-lasting insecticidal nets or standard pyrethroid nets combined with indoor residual spraying? , 2017, Malaria Journal.
[25] Thomas A. Smith,et al. Incidence and admission rates for severe malaria and their impact on mortality in Africa , 2017, Malaria Journal.
[26] David Malone,et al. A Chlorfenapyr Mixture Net Interceptor® G2 Shows High Efficacy and Wash Durability against Resistant Mosquitoes in West Africa , 2016, PloS one.
[27] M. Rowland,et al. Chlorfenapyr (A Pyrrole Insecticide) Applied Alone or as a Mixture with Alpha-Cypermethrin for Indoor Residual Spraying against Pyrethroid Resistant Anopheles gambiae sl: An Experimental Hut Study in Cove, Benin , 2016, PloS one.
[28] R. Oxborough. Trends in US President’s Malaria Initiative-funded indoor residual spray coverage and insecticide choice in sub-Saharan Africa (2008–2015): urgent need for affordable, long-lasting insecticides , 2016, Malaria Journal.
[29] M. Rowland,et al. Insecticide resistance profile of Anopheles gambiae from a phase II field station in Cové, southern Benin: implications for the evaluation of novel vector control products , 2015, Malaria Journal.
[30] U. Dalrymple,et al. The effect of malaria control on Plasmodium falciparum in Africa between 2000 and 2015 , 2015, Nature.
[31] M. Rowland,et al. The activity of the pyrrole insecticide chlorfenapyr in mosquito bioassay: towards a more rational testing and screening of non-neurotoxic insecticides for malaria vector control , 2015, Malaria Journal.
[32] Jie Ying Gao,et al. Effect of chlorfenapyr on cypermethrin-resistant Culex pipiens pallens Coq mosquitoes. , 2015, Acta tropica.
[33] I. Kleinschmidt,et al. Trends in the selection of insecticide resistance in Anopheles gambiae s.l. mosquitoes in northwest Tanzania during a community randomized trial of longlasting insecticidal nets and indoor residual spraying , 2014, Medical and veterinary entomology.
[34] M. Rowland,et al. Long-lasting control of Anopheles arabiensis by a single spray application of micro-encapsulated pirimiphos-methyl (Actellic® 300 CS) , 2014, Malaria Journal.
[35] M. Rowland,et al. Long-lasting control of Anopheles arabiensis by a single spray application of micro-encapsulated pirimiphos-methyl (Actellic® 300 CS) , 2014, Malaria Journal.
[36] Mark Rowland,et al. A New Long-Lasting Indoor Residual Formulation of the Organophosphate Insecticide Pirimiphos Methyl for Prolonged Control of Pyrethroid-Resistant Mosquitoes: An Experimental Hut Trial in Benin , 2013, PloS one.
[37] T. K. Barik,et al. Evaluation of the pyrrole insecticide chlorfenapyr for the control of Culex quinquefasciatus Say. , 2011, Acta tropica.
[38] C. Strode,et al. Can piperonyl butoxide enhance the efficacy of pyrethroids against pyrethroid‐resistant Aedes aegypti? , 2011, Tropical medicine & international health : TM & IH.
[39] T. K. Barik,et al. Chlorfenapyr: a new insecticide with novel mode of action can control pyrethroid resistant malaria vectors , 2011, Malaria Journal.
[40] J. Grieco,et al. A New Classification System for the Actions of IRS Chemicals Traditionally Used For Malaria Control , 2007, PloS one.
[41] A. Kumar,et al. Role of piperonyl butoxide in the toxicity of chlorpyrifos to Ceriodaphnia dubia and Xenopus laevis. , 2004, Ecotoxicology and environmental safety.
[42] G. Ankley,et al. Piperonyl butoxide as a tool in aquatic toxicological research with organophosphate insecticides. , 1991, Ecotoxicology and environmental safety.