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Impact of promoting longer-lasting insecticide treatment of bed nets upon malaria transmission in a rural Tanzanian setting with pre-existing high coverage of untreated nets

  • Tanya L. Russell
  • , Dickson W. Lwetoijera
  • , Deodatus Maliti
  • , Beatrice Chipwaza
  • , Japhet Kihonda
  • , J. Derek Charlwood
  • , Thomas A. Smith
  • , Christian Lengeler
  • , Mathew A. Mwanyangala
  • , Rose Nathan
  • , Bart Gj Knols
  • , Willem Takken
  • , Gerry F. Killeen
  • Ifakara Health Institute
  • Durham University
  • Liverpool School of Tropical Medicine
  • University of Dar Es Salaam
  • University of Copenhagen
  • Swiss Tropical and Public Health Institute
  • Amsterdam University Medical Centers
  • Wageningen University & Research

Research output: Contribution to journalArticlepeer-review

Abstract

Background. The communities of Namawala and Idete villages in southern Tanzania experienced extremely high malaria transmission in the 1990s. By 2001-03, following high usage rates (75% of all age groups) of untreated bed nets, a 4.2-fold reduction in malaria transmission intensity was achieved. Since 2006, a national-scale programme has promoted the use of longer-lasting insecticide treatment kits (consisting of an insecticide plus binder) co-packaged with all bed nets manufactured in the country. Methods. The entomological inoculation rate (EIR) was estimated through monthly surveys in 72 houses randomly selected in each of the two villages. Mosquitoes were caught using CDC light traps placed beside occupied bed nets between January and December 2008 (n = 1,648 trap nights). Sub-samples of mosquitoes were taken from each trap to determine parity status, sporozoite infection and Anopheles gambiae complex sibling species identity. Results. Compared with a historical mean EIR of ∼1400 infectious bites/person/year (ib/p/y) in 1990-94; the 2008 estimate of 81 ib/p/y represents an 18-fold reduction for an unprotected person without a net. The combined impact of longer-lasting insecticide treatments as well as high bed net coverage was associated with a 4.6-fold reduction in EIR, on top of the impact from the use of untreated nets alone. The scale-up of bed nets and subsequent insecticidal treatment has reduced the density of the anthropophagic, endophagic primary vector species, Anopheles gambiae sensu stricto, by 79%. In contrast, the reduction in density of the zoophagic, exophagic sibling species Anopheles arabiensis was only 38%. Conclusion. Insecticide treatment of nets reduced the intensity of malaria transmission in addition to that achieved by the untreated nets alone. Impacts were most pronounced against the highly anthropophagic, endophagic primary vector, leading to a shift in the sibling species composition of the A. gambiae complex.

Original languageEnglish
Article number187
JournalMalaria Journal
Volume9
Issue number1
DOIs
Publication statusPublished - 2010
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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