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Forschungsdatenbank PMU-SQQUID

Publikationen

Gewähltes Keyword: pyrethroid


In the hunt for genomic markers of metabolic resistance to pyrethroids in the mosquito Aedes aegypti: An integrated next-generation sequencing approach.
Faucon, F; Gaude, T; Dusfour, I; Navratil, V; Corbel, V; Juntarajumnong, W; Girod, R; Poupardin, R; Boyer, F; Reynaud, S; David, JP;
PLoS Negl Trop Dis. 2017; 11(4): e0005526
Originalarbeiten (Zeitschrift)
Comparative analysis of response to selection with three insecticides in the dengue mosquito Aedes aegypti using mRNA sequencing.
David, JP; Faucon, F; Chandor-Proust, A; Poupardin, R; Riaz, MA; Bonin, A; Navratil, V; Reynaud, S;
BMC Genomics. 2014; 15:174
Originalarbeiten (Zeitschrift)
CYP6 P450 enzymes and ACE-1 duplication produce extreme and multiple insecticide resistance in the malaria mosquito Anopheles gambiae.
Edi, CV; Djogbénou, L; Jenkins, AM; Regna, K; Muskavitch, MA; Poupardin, R; Jones, CM; Essandoh, J; Kétoh, GK; Paine, MJ; Koudou, BG; Donnelly, MJ; Ranson, H; Weetman, D;
PLoS Genet. 2014; 10(3):e1004236
Originalarbeiten (Zeitschrift)
The central role of mosquito cytochrome P450 CYP6Zs in insecticide detoxification revealed by functional expression and structural modelling.
Chandor-Proust, A; Bibby, J; Régent-Kloeckner, M; Roux, J; Guittard-Crilat, E; Poupardin, R; Riaz, MA; Paine, M; Dauphin-Villemant, C; Reynaud, S; David, JP;
Biochem J. 2013; 455(1):7-85
Originalarbeiten (Zeitschrift)
Resistance to DDT in an urban setting: common mechanisms implicated in both M and S forms of Anopheles gambiae in the city of Yaoundé Cameroon.
Fossog Tene, B; Poupardin, R; Costantini, C; Awono-Ambene, P; Wondji, CS; Ranson, H; Antonio-Nkondjio, C;
PLoS One. 2013; 8(4):e61408
Originalarbeiten (Zeitschrift)
Country-level operational implementation of the Global Plan for Insecticide Resistance Management.
Hemingway, J; Vontas, J; Poupardin, R; Raman, J; Lines, J; Schwabe, C; Matias, A; Kleinschmidt, I;
Proc Natl Acad Sci U S A. 2013; 110(23):9397-9402
Originalarbeiten (Zeitschrift)
Dissecting the mechanisms responsible for the multiple insecticide resistance phenotype in Anopheles gambiae s.s., M form, from Vallée du Kou, Burkina Faso.
Kwiatkowska, RM; Platt, N; Poupardin, R; Irving, H; Dabire, RK; Mitchell, S; Jones, CM; Diabaté, A; Ranson, H; Wondji, CS;
Gene. 2013; 519(1):98-106
Originalarbeiten (Zeitschrift)
Molecular mechanisms associated with increased tolerance to the neonicotinoid insecticide imidacloprid in the dengue vector Aedes aegypti.
Riaz, MA; Chandor-Proust, A; Dauphin-Villemant, C; Poupardin, R; Jones, CM; Strode, C; Régent-Kloeckner, M; David, JP; Reynaud, S;
Aquat Toxicol. 2013; 126:326-337
Originalarbeiten (Zeitschrift)
Gene amplification, ABC transporters and cytochrome P450s: unraveling the molecular basis of pyrethroid resistance in the dengue vector, Aedes aegypti.
Bariami, V; Jones, CM; Poupardin, R; Vontas, J; Ranson, H;
PLoS Negl Trop Dis. 2012; 6(6):e1692
Originalarbeiten (Zeitschrift)
The treatment of deep dermal hand burns: How do we achieve better results? Should we use allogeneic keratinocytes or skin grafts?
Haslik, W; Kamolz, LP; Lumenta, DB; Hladik, M; Beck, H; Frey, M;
Burns. 2010; 36(3): 329-334.
Originalarbeiten (Zeitschrift)
Cross-induction of detoxification genes by environmental xenobiotics and insecticides in the mosquito Aedes aegypti: impact on larval tolerance to chemical insecticides.
Poupardin, R; Reynaud, S; Strode, C; Ranson, H; Vontas, J; David, JP;
Insect Biochem Mol Biol. 2008; 38(5):540-551
Originalarbeiten (Zeitschrift)