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The Shockwè trap: a human-baited exposure-free device for surveillance and behaviour studies of anthropophilic vectors

  • Ayubo Kampango
  • , Thomas A. Smith
  • , Ana Paula Abílio
  • , Elias Alberto Machoe
  • , Júlio Francisco Matusse
  • , João Pinto
  • , Philip McCall
  • Instituto Nacional de Saude Maputo
  • Swiss TPH
  • University of Basel
  • NOVA University Lisbon

Research output: Contribution to journalArticlepeer-review

Abstract

Background:

The human biting rate (MBR) and entomological inoculation rate (EIR) are common parameters routinely used to measure the risk of malaria transmission. Both parameters can be estimated using human landing catches (HLC). Although it is considered the gold-standard, HLC puts collectors at higher risk of infection with mosquito-transmitted pathogens.

Methods:

A novel exposure-free host-seeking mosquito electrocution trap, the Shockwè trap (SHK), was developed and its efficiency for monitoring mosquito community composition and abundance was compared with human landing catches (HLC) as the gold-standard. Field experiments were performed in Massavasse village, southern Mozambique. Simultaneous indoor and outdoor collections of nocturnal host-seeking mosquitoes were carried out using the SHK and HLC methods. The relative sampling efficiency of SHK was estimated as the ratio of the numbers of mosquitoes caught in SHK compared HLC. Proportionality and density-dependence between SHK and HLC catches were estimated by mean of Bayesian regression approaches.

Results:

A total of 69,758 and 27,359 host-seeking mosquitoes comprising nineteen species and four genera, were collected by HLC and SHK respectively. In general, SHK and HLC sampled similar numbers of mosquito species, with the exceptions of the least common species Aedes sudanensis, Ae. subargenteus, and Coquillettidia versicolor that were caught only by HLC. The relative sampling efficiency and proportionality between SHK and matched HLC catches varied greatly between species and collection site. However, all mosquitoes collected by SHK were unfed, confirming the Shockwè trap design’s performance and reliability as a successful mosquito exposure free sampling approach.

Conclusions:

Results demonstrate that SHK is a safe and reliable human-exposure free device for monitoring the occurrence of a wide range of mosquito, including major malaria and arboviruses vector species. However, improvements are needed to increase its sampling efficiency for less abundant mosquito species.

Original languageEnglish
Article number455
JournalWellcome Open Research
Volume8
DOIs
Publication statusPublished - 12 Oct 2023

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

Keywords

  • HLC
  • host-seeking
  • indoor
  • Mosquitoes
  • outdoor
  • Shockwè trap
  • trapping efficiency
  • traps

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