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Fasasi, K. A.

Publications and source records attributed to Fasasi, K. A..

2 recordsLinked to original sources

Investigating insecticide susceptibility status of adult mosquitoes against some class of insecticides in Osogbo metropolis, Osun State, Nigeria

The study evaluates the resistance and susceptibility of adult female Anopheles gambiae s. l., Aedes aegypti and Culex quinquefasciatus mosquitoes sourced within Osogbo metropolis, Osun State, Nigeria to four groups of insecticides [Permethrin, Deltamethrin, Pirimiphos-methyl and DDT (Dichlorodiphenyltrichloroethan)] and the distribution of their larval habitat within the metropolis. Mosquito larvae of the three genera were collected during the wet season and reared to adult stage in the laboratory. Emerged adult female mosquitoes were exposed to insecticide impregnated papers of the four insecticide groups for 60mins using WHO kits to determine the knock down rate (kdr). Thereafter, they were to holding tubes and left for 24hrs to assess their resistance and susceptibility according to the WHO protocol. Four types of larval habitats were identified (tires, ground pools, gutters and plastic containers). Anopheles gambiae s. l. showed the greatest resistance to Permethrin (49%) (p=0.04, p<0.05) while the highest susceptibility was recorded with Pirimiphos-methyl (69%) with the lowest against Permethrin (16%) (P=0.002; p<0.05). The greatest resistance of A. aegypti was against OC-Control (45%) (p=0.031; p<0.05). Permethrin had the highest susceptibility (60%) against A. aegypti while OC-control had the lowest (11%) (p= 0.005; p< 0.05). Culex quinquefasciatus had a lesser resistance to OC-control (38%) as compared with Aedes aegypti (45%). However, it was most least susceptible to Pirimiphos-methyl (52%) and DDT (17%) respectively (p=0.013; p<0.05). The susceptibility of A. gambiae s. l. and C. quinquefasciatus to Pirimiphos-methyl and A. aegypti to Permethrin is an indication of the possibility of success if employed for vector control of A. gambiae s. l., C. quinquefasciatus and A. aegypti respectively. This could be through their inclusion as active ingredients in insecticide treated nets (ITNs) and indoor residual spray (IRS) with a view to abating malaria and other life-threatening mosquito-borne diseases constituting global public health scourge.

zoology↗

Insecticidal Efficacy of Selected Botanicals on three species of Adult Mosquitoes in Osogbo, Osun State, Nigeria

The present study investigated the insecticidal potency of phytochemicals from three indigenous botanicals namely Moringa oleifera (Drumstick tree), Vernonia amygdalina (Bitter leaf) and Ocimum gratissimum (Scent leaf) against adult mosquitoes of the Anopheles species, Aedes species and Culex species cum their larval habitats. Collection of the mosquito larval was made after scouting and identifying their breeding sites using scoops, plastic containers, sieves etc. Larva collection was done in the wet season (April to October) while the collected larva were conveyed to the laboratory and reared until they emerged into adults. A bioassay comprising twenty five adult mosquitoes from each of the three adult mosquito species were exposed to the botanicals at three different concentrations (5g/10ml, 10g/10ml and 15g/10ml) to assess their insecticidal potency which was measured through their knockdown rate (kdr) and mortality rate. The kdr were recorded at intervals for an hour while the mortality rates were recorded after 24hours of exposure. A total of 400 mosquito larva were collected and five larval habitat encountered. The three botanicals showed insecticidal potency against the adult mosquito species. However, O. gratissimum had the highest potency at 15g/10ml against Anopheles (46%) and Culex (34%) species respectively (p {square} 0.05). Aedes spp was resistant to the botanicals which may be due to a resistance barrier mechanism in Aedes spp that the botanicals lack the ability to break. The botanicals could be adopted in the control of adult mosquitoes as they are biodegradable, eco-friendly and economical in contrast to synthetic insecticides with a view to consolidating global efforts on mosquito-borne diseases control and elimination with little or no human or environmental hazard.

zoology↗