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3201por Chinula, Dingani, Sikaala, Chadwick H., Chanda-Kapata, Pascalina, Hamainza, Busiku, Zulu, Reuben, Reimer, Lisa, Chizema, Elizabeth, Kiware, Samson, Okumu, Fredros O., Killeen, Gerry“…They were then tested for insecticidal efficacy using fully susceptible insectary-reared Anopheles gambiae mosquitoes, following 0, 5, 10, 15, then 20 washes as per WHO-recommended protocols for accelerated ageing of LLINs. …”
Publicado 2018
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3202por Kahindi, Samuel C., Muriu, Simon, Derua, Yahya A., Wang, Xiaoming, Zhou, Guofa, Lee, Ming-Chieh, Mwangangi, Joseph, Atieli, Harrysone, Githeko, Andrew K., Yan, Guiyun“…CONCLUSIONS: Both LL3 and FourStar® long-lasting microbial larvicides were effective in reducing immature stages of An. gambiae complex and An. funestus group species, with significant reductions lasting for three months post-application.…”
Publicado 2018
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3203por Kaindoa, Emmanuel W., Ngowo, Halfan S., Limwagu, Alex J., Tchouakui, Magellan, Hape, Emmanuel, Abbasi, Said, Kihonda, Japhet, Mmbando, Arnold S., Njalambaha, Rukiyah M., Mkandawile, Gustav, Bwanary, Hamis, Coetzee, Maureen, Okumu, Fredros O.“…RESULTS: 581 An. funestus (98.1% males (n = 570) and 1.9% (n = 11) females) and 9 Anopheles gambiae sensu lato (s.l.) males were sampled using sweep nets from the 81 confirmed swarms in two villages (Ikwambi in Kilombero district and Tulizamoyo in Ulanga district). …”
Publicado 2019
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3204por Ibrahim, Sulaiman S., Mukhtar, Muhammad M., Irving, Helen, Labbo, Rabiou, Kusimo, Michael O., Mahamadou, Izamné, Wondji, Charles S.“…METHODS: Blood fed female Anopheles gambiae sensu lato resting indoor were collected at Tessaoua, Niger. …”
Publicado 2019
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3205por Pantoja-Sánchez, Hoover, Gomez, Sebastián, Velez, Viviana, Avila, Frank W., Alfonso-Parra, Catalina“…The importance of sound in precopulatory interactions has been demonstrated in Toxorhynchites brevipalpis, Aedes aegypti, Culex quinquefasciatus and Anopheles gambiae; convergence in a shared harmonic of the wing beat frequency (WBF) during courtship is thought to increase the chance of copulation. …”
Publicado 2019
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3206por Belda, Eugeni, Nanfack-Minkeu, Ferdinand, Eiglmeier, Karin, Carissimo, Guillaume, Holm, Inge, Diallo, Mawlouth, Diallo, Diawo, Vantaux, Amélie, Kim, Saorin, Sharakhov, Igor V., Vernick, Kenneth D.“…RESULTS: Anopheles mosquitoes were sampled in malaria endemic forest village sites in Senegal and Cambodia, including Anopheles funestus, Anopheles gambiae group sp., and Anopheles coustani in Senegal, and Anopheles hyrcanus group sp., Anopheles maculatus group sp., and Anopheles dirus in Cambodia. …”
Publicado 2019
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3207por Ibrahim, Sulaiman S., Fadel, Amen N., Tchouakui, Magellan, Terence, Ebai, Wondji, Murielle J., Tchoupo, Micareme, Kérah-Hinzoumbé, Clement, Wanji, Samuel, Wondji, Charles S.“…METHODS: Bloodfed female Anopheles gambiae s.l. resting indoor, were collected at N’djamena and Massakory, Chad in 2018 and characterized for species composition, and infection rate was determined using the TaqMan assay. …”
Publicado 2019
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3208por Nsereko, Godfrey, Kadobera, Daniel, Okethwangu, Denis, Nguna, Joyce, Rutazaana, Damian, Kyabayinze, Daniel J., Opigo, Jimmy, Ario, Alex R.“…Entomological assessment indicated active breeding sites in the entire study area; Anopheles gambiae sensu lato species were the predominant vector. …”
Publicado 2020
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3209por Fayad, Nancy, Kambris, Zakaria, El Chamy, Laure, Mahillon, Jacques, Kallassy Awad, Mireille“…In addition, H3 has a different toxicity order: it is more toxic to Aedes albopictus and Anopheles gambiae than to Culex pipiens. Whole-genome sequencing and crystal analysis revealed that H3 can produce 11 novel Cry proteins, 8 of which are assembled in genes with an orf1-gap-orf2 organization, where orf2 is a potential Cry4-type crystallization domain. …”
Publicado 2021
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3210por Tia, Innocent Z., Barreaux, Antoine M. G., Oumbouke, Welbeck A., Koffi, Alphonsine A., Ahoua Alou, Ludovic P., Camara, Soromane, Wolie, Rosine Z., Sternberg, Eleanore D., Dahounto, Amal, Yapi, Gregoire Y., Thomas, Matthew B., N’Guessan, Raphael“…They attract nuisance host-seeking Cx. quinquefasciatus mosquitoes and are as effective in controlling them as they are against pyrethroid-resistant Anopheles gambiae, despite the high level of resistance Cx. quinquefasciatus have developed. …”
Publicado 2023
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3211por Mbare, Oscar, Njoroge, Margaret Mendi, Ong’wen, Fedinand, Bukhari, Tullu, Fillinger, Ulrike“…(RR 2.5; 95% CI 1.7–3.8) and Anopheles gambiae s.l. (RR 2.5; 95% 1.7–3.6). Outdoor collections were lower than indoor collections and similar for all light sources and traps. …”
Publicado 2023
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3212por Kweyamba, Prisca A., Hofer, Lorenz M., Kibondo, Ummi A., Mwanga, Rehema Y., Sayi, Rajabu M., Matwewe, Fatuma, Austin, James W., Stutz, Susanne, Moore, Sarah J., Müller, Pie, Tambwe, Mgeni M.“…Pyrethroid-resistant Anopheles gambiae s.s. with L1014F and L1014S knockdown resistance alleles and expression levels of pyrethroid metabolisers CYP6P3, CYP6M2, CYP4G16 and CYP6P1 confirmed by quantitative reverse transcription polymerase chain reaction (RT-qPCR) prior to conducting experiments were exposed to untreated netting and netting treated with 200 mg/m(3) chlorfenapyr for 8 h overnight and then fed on gametocytemic blood meals from naturally infected individuals. …”
Publicado 2023
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3213por Natchema S. Fonkou, Brice, Tchouakui, Magellan, Menze, Benjamin D., Mugenzi, Leon M. J., Fofie, Derrick, Nguiffo-Nguete, Daniel, Nkengazong, Lucia, Tombi, Jeannette, Wondji, Charles S.“…RESULTS: An. funestus s.l was the predominant malaria vector collected during the entomological survey in both sites (86.6% and 96.4% in Elende and Mibellon, respectively) followed by An. gambiae s.l (7.5% and 2.4%, respectively). Sporozoite infection rates were very high in both collection sites (8.7% and 11% in Elende and Mibellon, respectively). …”
Publicado 2023
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3214por Mtove, George, Mugasa, Joseph P., Messenger, Louisa A., Malima, Robert C., Mangesho, Peter, Magogo, Franklin, Plucinski, Mateusz, Hashimu, Ramadhan, Matowo, Johnson, Shepard, Donald, Batengana, Bernard, Cook, Jackie, Emidi, Basiliana, Halasa, Yara, Kaaya, Robert, Kihombo, Aggrey, Lindblade, Kimberly A., Makenga, Geofrey, Mpangala, Robert, Mwambuli, Abraham, Mzava, Ruth, Mziray, Abubakary, Olang, George, Oxborough, Richard M., Seif, Mohammed, Sambu, Edward, Samuels, Aaron, Sudi, Wema, Thomas, John, Weston, Sophie, Alilio, Martin, Binkin, Nancy, Gimnig, John, Kleinschmidt, Immo, McElroy, Peter, Moulton, Lawrence H., Norris, Laura, Ruebush, Trenton, Venkatesan, Meera, Rowland, Mark, Mosha, Franklin W., Kisinza, William N.“…Entomological inoculation rate will be estimated using indoor CDC light traps and outdoor tent traps followed by detection of Anopheles gambiae species, sporozoite infection, insecticide resistance and blood meal source. …”
Publicado 2016
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3215por Poda, Serge B., Soma, Dieudonné D., Hien, Aristide, Namountougou, Moussa, Gnankiné, Olivier, Diabaté, Abdoulaye, Fournet, Florence, Baldet, Thierry, Mas-Coma, Santiago, Mosqueira, Beatriz, Dabiré, Roch K.“…The residual efficacy was evaluated monthly by WHO bioassays using Anopheles gambiae ‘Kisumu’ and local populations of Anopheles coluzzii resistant to pyrethroids. …”
Publicado 2018
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3216por Khatib, Rashid A., Chaki, Prosper P., Wang, Duo-Quan, Mlacha, Yeromin P., Mihayo, Michael G., Gavana, Tegemeo, Xiao, Ning, Zhou, Xiao-Nong, Abdullah, Salim“…Anopheles arabiensis, a mosquito species renowned for its resilience against existing malaria vector control measures has now outnumbered the endophagic and anthrophilic Anopheles gambiae sensu stricto as the dominant vector. Vector control measures, prophylaxis and case management with artemisinin-based combination therapy (ACT) are the main control interventions. …”
Publicado 2018
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3217por Abong’o, Bernard, Yu, Xiaoyu, Donnelly, Martin J., Geier, Martin, Gibson, Gabriella, Gimnig, John, ter Kuile, Feiko, Lobo, Neil F., Ochomo, Eric, Munga, Stephen, Ombok, Maurice, Samuels, Aaron, Torr, Stephen J., Hawkes, Frances M.“…The proportion of An. gambiae (s.s.) was highest in HLC (0.55 ± 0.05; SE) followed by HDT-H (0.20 ± 0.09; SE) and least in HDT-C (0.06 ± 0.01; SE). …”
Publicado 2018
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3218por Fadel, Amen N., Ibrahim, Sulaiman S., Tchouakui, Magellan, Terence, Ebai, Wondji, Murielle J., Tchoupo, Micareme, Wanji, Samuel, Wondji, Charles S.“…As a contribution towards understanding patterns of resistance and its mechanism in the field we characterized a population of Anopheles gambiae (s.l.) from Gounougou, a Guinea savanna of north/central Cameroon. …”
Publicado 2019
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3219por Smit, Menno R, Ochomo, Eric O, Aljayyoussi, Ghaith, Kwambai, Titus K, Abong’o, Bernard O, Bousema, Teun, Waterhouse, David, Bayoh, Nabie M, Gimnig, John E, Samuels, Aaron M, Desai, Meghna R, Phillips-Howard, Penelope A, Kariuki, Simon K, Wang, Duolao, Ward, Stephen A, ter Kuile, Feiko O“…On post-treatment day 7, direct skin and membrane feeding assays were conducted using laboratory-reared Anopheles gambiae sensu stricto. Mosquito survival was assessed daily for 28 days post-feeding. …”
Publicado 2019
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3220por Toé, Kobié H., Mechan, Frank, Tangena, Julie-Anne A., Morris, Marion, Solino, Joanna, Tchicaya, Emile F. S., Traoré, Alphonse, Ismail, Hanafy, Maas, James, Lissenden, Natalie, Pinder, Margaret, Lindsay, Steve W., Tiono, Alfred B., Ranson, Hilary, Sagnon, N’Falé“…Bioefficacy was assessed by exposing permethrin-susceptible and resistant Anopheles gambiae sensu lato mosquito strains to standard World Health Organization (WHO) cone and tunnel tests with impacts on fertility measured in the resistant strain. …”
Publicado 2019
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