Last Updated: 18/05/2026

Quantifying insecticide impact on malaria transmission: does resistance matter?

Objectives

Our overall objective of this study is to determine whether and how insecticide resistance ultimately affects malaria transmission.

Specifically this study aims to:

  1. determine the extent to which mosquitoes nominally defined as resistant using the `industry standard’ WHO assays, remain functionally resistant when the influence of a suite of ecological factors such as insect age, infection status, environmental conditions, realistic exposure patterns and insect behavior are taken into account;
  2. quantify any fitness related costs associated with insecticide resistance to complement these transmission-related measures, again capturing the effects of realistic environmental stressors; and
  3. explore the implications of resistance for malaria transmission and to evaluate how resistance might spread under different environmental conditions and possible management prescriptions by using a suite of modeling approaches parameterized from the novel empirical data.
Principal Investigators / Focal Persons

Matthew Thomas

Rationale and Abstract

The wide scale deployment of insecticide-based interventions against adult mosquito vectors has contributed to significant declines in the global malaria burden in recent years. However, many malaria-affected countries are now reporting the emergence of insecticide resistance. If left unchecked, the spread of resistant mosquitoes could derail contemporary malaria control. Yet surprisingly, the epidemiological significance of insecticide resistance remains very poorly defined and examples demonstrating a causal link between resistance and malaria resurgence are few. This research will advance fundamental understanding of the epidemiological significance of insecticide resistance and provide an evidence base for appropriate development of insecticide resistance management strategies.

Date

Jul 2015 — Jun 2018

Total Project Funding

$410,500

Country / Project Site(s)

United States

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