In recent decades, dengue incidence has trended upward worldwide causing urgent needs for new or modified vector control methods. We modified the existing indoor residual spraying (IRS) method by applying insecticide on the outer walls of building structures in an outdoor residual spraying (ORS) study. A semi-field study was conducted to investigate the bio-efficacy of two different deltamethrin formulations: K-Othrine® Polyzone, new polymer-enhanced deltamethrin formulated as a suspension concentrate (SC-PE), and K-Othrine® WG 250, traditional deltamethrin formulated as water dispersible granule (WG). The residual bio-efficacy of deltamethrin SC-PE was compared to deltamethrin WG on finished cement surfaces applied to the outer walls at the Institute for Medical Research (IMR), Malaysia. Standard WHO cone wall bioassays were adapted to evaluate the effective duration of action of these deltamethrin formulations against susceptible laboratory-reared and wild, free-flying and . . Analyses of bioassay results showed that deltamethrin SC-PE 30 mg/m has improved longevity in comparison to deltamethrin WG 30 mg/m. Deltamethrin SC-PE 30 mg/m was effective until week 17 (producing > 80% mortality), surpassing deltamethrin WG 30 mg/m which only lasted until week 10. This was supported by post-hoc test analyses which demonstrated that deltamethrin SC-PE 30 mg/m produced the highest mean of mortality in laboratory-reared species and the wild . However, the effective duration of action of deltamethrin SC-PE (17 weeks) was less than the recommended period by WHO (6 months) but was reasonable given that the spraying was undertaken outdoor. This preliminary data could be of use for the deployment of locally adapted ORS operation in controlling dengue.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6976940PMC
http://dx.doi.org/10.1016/j.heliyon.2020.e03230DOI Listing

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In recent decades, dengue incidence has trended upward worldwide causing urgent needs for new or modified vector control methods. We modified the existing indoor residual spraying (IRS) method by applying insecticide on the outer walls of building structures in an outdoor residual spraying (ORS) study. A semi-field study was conducted to investigate the bio-efficacy of two different deltamethrin formulations: K-Othrine® Polyzone, new polymer-enhanced deltamethrin formulated as a suspension concentrate (SC-PE), and K-Othrine® WG 250, traditional deltamethrin formulated as water dispersible granule (WG).

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Article Synopsis
  • Deltamethrin 62.5 polymer-enhanced suspension concentrate (SC-PE) is recommended by the WHO for indoor residual spraying and was studied for its effectiveness in reducing malaria incidence in Odisha, India, a hyper-endemic region.
  • The study compared deltamethrin 62.5 SC-PE with a control, deltamethrin 2.5% WP, evaluating factors like vector density and malaria incidence over time.
  • Results showed that deltamethrin 62.5 SC-PE remained effective for up to 157 days on different surfaces, suggesting one spray cycle could effectively target two peak malaria seasons in India.
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Background: The Stockholm Convention on Persistent Organic Pollutants (POPs) came into effect in 2004; the use of DDT for malaria control has been allowed to continue under exemption since then due to a perceived absence of equally effective and efficient alternatives. Alternative classes of insecticide for indoor residual spraying (IRS) have a relatively short residual duration of action (2-6 months according to WHO). In areas of year-round transmission multiple spray cycles are required, resulting in significantly higher costs for malaria control programs and user fatigue.

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