Insecticide resistance in Anopheles arabiensis from Ethiopia
AFRICAN ENTOMOLOGY
Authors: Fettene, M.; Olana, D.; Christian, R. N.; Koekemoer, L. L.; Coetzee, M.
Abstract
The status of insecticide susceptibility of Anopheles arabiensis populations was monitored in northern and southern Ethiopia using one- to three-day-old mosquitoes reared from larval collections. Anopheles gambiae complex mosquitoes, identified by PCR as An. arabiensis, were exposed to diagnostic concentrations of DDT, malathion, fenitrothion, bendiocarb, propoxur and deltamethrin according to the standard WHO procedure. A heterogeneous and focal distribution of resistance phenotypes was observed in surveyed districts of the country. In Tach Armacho in northern Ethiopia, only resistance to DDT was detected. In the other two northern sites, An. arabiensis populations were susceptible to fenitrothion, resistant to malathion, propoxur and DDT and showed low levels of survival when exposed to bendiocarb requiring further investigations. In three areas of southern Ethiopia, An. arabiensis was susceptible to bendiocarb, propoxur and malathion, with low levels of survival on fenitrothion needing further confirmation. These samples were resistant to DDT and deltamethrin. Analyses for the knockdown resistant (kdr) mutations showed only the L1014F mutation was present with frequencies ranging from 68 to 100 %. The need for routine monitoring and surveillance as part of an insecticide resistance management programme is highlighted.
Electrodes Based on Functionalized Carbon Nanotubes as Sensors to Determine Fenitrothion in Apple Tea Samples
SENSOR LETTERS
Authors: Palazzo, Fernanda; Codognoto, Lucia; Simoes, Fabio Ruiz
Abstract
In this work, the quantitative electroanalytical determination of Fenitrothion pesticide was studied using a bare glassy carbon electrode (GCE) modified with functionalized multiwalled carbon nanotubes (MWNTs) and Square Wave Anodic Stripping Voltammetry (SWASV). The method to modify the GCE electrode surface with the MWNTs was optimized to avoid the contamination by the pesticide adsorption. Infusions of apple tea samples were spiked with the pesticide and analyzed by the standard addition method using the GCE/MWNT electrode. The obtained Limits of Detection (LD) and Quantification (LQ) were 7.30 x 10(-7) mol L-1 and 2.40 x 10(-6) mol L-1, respectively. The recovery values were between 96.0 and 104%. The results confirmed the method suitability to the determination of fenitrothion in commercial apple tea samples with the increase of the detection limits and avoiding irreversible contamination of the electrode surface by the pesticide.