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Wide area spray of bacterial larvicide, Bacillus thuringiensis israelensis strain AM65-52, integrated in the national vector control program impacts dengue transmission in an urban township in Sibu district, Sarawak, Malaysia.

Abstract
Several sites, Z-7L, Z-5 and Z-14, in Sibu district, Sarawak, Malaysia, experienced intense dengue transmission in 2014 that continued into 2015. A pilot study with Bacillus thuringiensis israelensis (Bti) to control Aedes aegypti (L.) and Ae. albopictus (Skuse) was evaluated in Z-7L, a densely populated site of 12 ha. Bti treatments were conducted weekly from epidemiology week (EW) 24/2015 for 4 weeks, followed by fortnight treatments for 2 months, in addition to the routine control activities. Bti was directly introduced into potable containers and the outdoor artificial and natural containers were treated via a wide area spray application method using a backpack mister. Aedes indices significantly reduced during the treatment and post treatment phases, compared to the control site, Z-5 (p<0.05). A 51 fold reduction in the incidence rate per 100,000 population (IR) was observed, with one case in 25 weeks (EW 29-52). In Z-5 and Z-14, control sites, a 6 fold reduction in the IR was observed from EW 29-52. However, almost every week there were dengue cases in Z-14 and until EW 44 in Z-5. In 2016, dengue cases resurfaced in Z-7L from EW 4. Intensive routine control activities were conducted, but the IR continued to escalate. The wide area Bti spray misting of the outdoor containers was then included from EW 27 on fortnight intervals. A 6 fold reduction in IR was observed in the Bti treatment phase (EW 32-52) with no successive weekly cases after EW 37. However, in the control sites, there were dengue cases throughout the year from EW 1-52, particularly in Z-14. We feel that the wide area Bti spray application method is an integral component in the control program, in conjunction with other control measures carried out, to suppress the vector population in outdoor cryptic containers and to interrupt the disease transmission.
AuthorsRezal Bohari, Chong Jin Hin, Asmad Matusop, Muhamad Rais Abdullah, Teoh Guat Ney, Seleena Benjamin, Lee Han Lim
JournalPloS one (PLoS One) Vol. 15 Issue 4 Pg. e0230910 ( 2020) ISSN: 1932-6203 [Electronic] United States
PMID32236146 (Publication Type: Journal Article, Research Support, Non-U.S. Gov't)
Chemical References
  • Biological Control Agents
  • Insecticides
Topics
  • Aedes (microbiology, virology)
  • Animals
  • Bacillus thuringiensis
  • Biological Control Agents
  • Dengue (epidemiology, transmission)
  • Disease Reservoirs (virology)
  • Disease Vectors
  • Insecticides
  • Larva (microbiology, virology)
  • Malaysia (epidemiology)
  • Mosquito Control (methods)
  • Mosquito Vectors (microbiology, virology)
  • Pilot Projects
  • Prevalence

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