A dynamic pharmacometric framework defining the relationship between ivermectin exposure and mosquito lethality

R Richard M. Hoglund K Kevin C. Kobylinski P Podjanee Jittamala B Borimas Hanboonkunupakarn N Narenrit Wamaket P Patchara Sriwichai S Siriporn Phasomkusolsil N Nicholas J. White (Mahidol Oxford Tropical Medicine Research Unit, Bangkok, Thailand) N Nicholas P. J. Day J Joel Tarning

Abstract

Abstract Ivermectin is used in the treatment of several neglected tropical diseases. Studies have shown that it effectively kills anopheline mosquitoes. However, the relationship between the pharmacokinetic properties and mosquito-lethal effects have not been described quantitatively. Pharmacokinetic properties and mosquito-lethal effects associated with a single oral administration of ivermectin were evaluated in two healthy volunteer trials in Thailand. All data were pooled and analysed using nonlinear mixed-effect modelling. Ivermectin and metabolites were described by a parent-metabolite model. When co-administered with dihydroartemisinin-piperaquine, a reduced elimination clearance (41%) and a slower absorption (32%) of ivermectin was identified, resulting in higher exposures. Different peripheral volume of distributions of ivermectin in men and women were also observed (75% higher in females). Individual pharmacokinetic profiles were incorporated in a sigmoidal E max model, which were used to quantify the relationship between ivermectin exposure and mosquito-lethal effects. The integrated models described successfully the observed mortality of both Anopheles dirus and An. minimus . The final models were used to illustrate the potential impact on vector-control associated with ivermectin administration. In conclusion, ivermectin and its metabolites showed effective mosquito-lethal effects. The developed pharmacometric framework could be a useful tool in the evaluation of ivermectin as a potential vector-control agent in malaria elimination campaigns.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 18, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (10)

R

Richard M. Hoglund

K

Kevin C. Kobylinski

P

Podjanee Jittamala

B

Borimas Hanboonkunupakarn

N

Narenrit Wamaket

P

Patchara Sriwichai

S

Siriporn Phasomkusolsil

N

Nicholas J. White

Mahidol Oxford Tropical Medicine Research Unit, Bangkok, Thailand

N

Nicholas P. J. Day

J

Joel Tarning