Scinovex
review Open AccessTop 1% cited

The importance of vector control for the control and elimination of vector-borne diseases

PLoS neglected tropical diseases · 2020 · Vol. 14(1) · pp. e0007831–e0007831
Anne L. WilsonOrin CourtenayLouise A. Kelly‐HopeThomas W. ScottWillem TakkenStephen J. TorrSteve W. Lindsay

Abstract

Vector-borne diseases (VBDs) such as malaria, dengue, and leishmaniasis exert a huge burden of morbidity and mortality worldwide, particularly affecting the poorest of the poor. The principal method by which these diseases are controlled is through vector control, which has a long and distinguished history. Vector control, to a greater extent than drugs or vaccines, has been responsible for shrinking the map of many VBDs. Here, we describe the history of vector control programmes worldwide from the late 1800s to date. Pre 1940, vector control relied on a thorough understanding of vector ecology and epidemiology, and implementation of environmental management tailored to the ecology and behaviour of local vector species. This complex understanding was replaced by a simplified dependency on a handful of insecticide-based tools, particularly for malaria control, without an adequate understanding of entomology and epidemiology and without proper monitoring and evaluation. With the rising threat from insecticide-resistant vectors, global environmental change, and the need to incorporate more vector control interventions to eliminate these diseases, we advocate for continued investment in evidence-based vector control. There is a need to return to vector control approaches based on a thorough knowledge of the determinants of pathogen transmission, which utilise a range of insecticide and non-insecticide-based approaches in a locally tailored manner for more effective and sustainable vector control.

Mosquito-borne diseases and controlInsect symbiosis and bacterial influencesMalaria Research and ControlVector controlVector (molecular biology)MalariaNeglected tropical diseasesMosquito controlDengue feverBiologyRisk analysis (engineering)Environmental healthPublic health

MeSH terms

Vector Borne DiseasesAnimalsDisease VectorsInsect ControlInsecticidesTick ControlHistory, 18th CenturyHistory, 19th CenturyHistory, 20th CenturyHistory, 21st Century

Funding

  • Directorate for Biological Sciences
  • Medical Research Council
  • Biotechnology and Biological Sciences Research Council
  • Natural Environment Research Council
Citations
855
FWCI
82.36
field-weighted impact
References
205
Percentile
100%
vs. same field & year
Citations per year
Cited by
A study on certain biological control methods to control and manage vector-borne diseases
International Journal of Mosquito Research · 2021 · 3 citations
Potential biological agents for control of mosquitoes
International Journal of Mosquito Research · 2023 · 6 citations
Pandemics Throughout History
Frontiers in Microbiology · 2021 · 707 citations
References
A Critical Assessment of Vector Control for Dengue Prevention
PLoS neglected tropical diseases · 2015 · 445 citations
COMMUNITY-WIDE EFFECTS OF PERMETHRIN-TREATED BED NETS ON CHILD MORTALITY AND MALARIA MORBIDITY IN WESTERN KENYA
American Journal of Tropical Medicine and Hygiene · 2003 · 643 citations
Related articles
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

The importance of vector control for the control and elimination of vector-borne diseases · Scinovex