Literature DB >> 31948767

Ivermectin as a novel complementary malaria control tool to reduce incidence and prevalence: a modelling study.

Hannah C Slater1, Brian D Foy2, Kevin Kobylinski3, Carlos Chaccour4, Oliver J Watson5, Joel Hellewell5, Ghaith Aljayyoussi6, Teun Bousema7, Jeremy Burrows8, Umberto D'Alessandro9, Haoues Alout10, Feiko O Ter Kuile6, Patrick G T Walker5, Azra C Ghani5, Menno R Smit6.   

Abstract

BACKGROUND: Ivermectin is a potential new vector control tool to reduce malaria transmission. Mosquitoes feeding on a bloodmeal containing ivermectin have a reduced lifespan, meaning they are less likely to live long enough to complete sporogony and become infectious. We aimed to estimate the effect of ivermectin on malaria transmission in various scenarios of use.
METHODS: We validated an existing population-level mathematical model of the effect of ivermectin mass drug administration (MDA) on the mosquito population and malaria transmission against two datasets: clinical data from a cluster- randomised trial done in Burkina Faso in 2015 wherein ivermectin was given to individuals taller than 90 cm and entomological data from a study of mosquito outcomes after ivermectin MDA for onchocerciasis or lymphatic filariasis in Burkina Faso, Senegal, and Liberia between 2008 and 2013. We extended the existing model to include a range of complementary malaria interventions (seasonal malaria chemoprevention and MDA with dihydroartemisinin-piperaquine) and to incorporate new data on higher doses of ivermectin with a longer mosquitocidal effect. We consider two ivermectin regimens: a single dose of 400 μg/kg (1 × 400 μg/kg) and three consecutive daily doses of 300 μg/kg per day (3 × 300 μg/kg). We simulated the effect of these two doses in a range of usage scenarios in different transmission settings (highly seasonal, seasonal, and perennial). We report percentage reductions in clinical incidence and slide prevalence.
FINDINGS: We estimate that MDA with ivermectin will reduce prevalence and incidence and is most effective in areas with highly seasonal transmission. In a highly seasonal moderate transmission setting, three rounds of ivermectin only MDA at 3 × 300 μg/kg (rounds spaced 1 month apart) and 70% coverage is predicted to reduce clinical incidence by 71% and prevalence by 34%. We predict that adding ivermectin MDA to seasonal malaria chemoprevention in this setting would reduce clinical incidence by an additional 77% in children younger than 5 years compared with seasonal malaria chemoprevention alone; adding ivermectin MDA to MDA with dihydroartemisinin-piperaquine in this setting would reduce incidence by an additional 75% and prevalence by an additional 64% (all ages) compared with MDA with dihydroartemisinin-piperaquine alone.
INTERPRETATION: Our modelling predictions suggest that ivermectin could be a valuable addition to the malaria control toolbox, both in areas with persistently high transmission where existing interventions are insufficient and in areas approaching elimination to prevent resurgence. FUNDING: Imperial College Junior Research Fellowship.
Copyright © 2020 Elsevier Ltd. All rights reserved.

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Year:  2020        PMID: 31948767     DOI: 10.1016/S1473-3099(19)30633-4

Source DB:  PubMed          Journal:  Lancet Infect Dis        ISSN: 1473-3099            Impact factor:   25.071


  13 in total

Review 1.  The use of islands and cluster-randomized trials to investigate vector control interventions: a case study on the Bijagós archipelago, Guinea-Bissau.

Authors:  Robert T Jones; Elizabeth Pretorius; Thomas H Ant; John Bradley; Anna Last; James G Logan
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2020-12-28       Impact factor: 6.237

Review 2.  Broadening the range of use cases for ivermectin - a review of the evidence.

Authors:  Christian Kositz; John Bradley; Harry Hutchins; Anna Last; Umberto D'Alessandro; Michael Marks
Journal:  Trans R Soc Trop Med Hyg       Date:  2022-03-02       Impact factor: 2.455

3.  From informed consent to adherence: factors influencing involvement in mass drug administration with ivermectin for malaria elimination in The Gambia.

Authors:  Alexandra Fehr; Claudia Nieto-Sanchez; Joan Muela; Fatou Jaiteh; Omar Ceesay; Ebrima Maneh; Dullo Baldeh; Jane Achan; Edgard Dabira; Bakary Conteh; Joske Bunders-Aelen; Tom Smekens; Henk Broekhuizen; Umberto D'Alessandro; Koen Peeters Grietens
Journal:  Malar J       Date:  2021-04-26       Impact factor: 2.979

Review 4.  Towards the elimination of Plasmodium vivax malaria: Implementing the radical cure.

Authors:  Kamala Thriemer; Benedikt Ley; Lorenz von Seidlein
Journal:  PLoS Med       Date:  2021-04-23       Impact factor: 11.069

5.  A systematic review and an individual patient data meta-analysis of ivermectin use in children weighing less than fifteen kilograms: Is it time to reconsider the current contraindication?

Authors:  Podjanee Jittamala; Wuelton Monteiro; Menno R Smit; Belen Pedrique; Sabine Specht; Carlos J Chaccour; Céline Dard; Pascal Del Giudice; Virak Khieu; Annabel Maruani; Virgilio E Failoc-Rojas; Marimar Sáez-de-Ocariz; Antoni Soriano-Arandes; Jaime Piquero-Casals; Anne Faisant; Marie-Pierre Brenier-Pinchart; David Wimmersberger; Jean T Coulibaly; Jennifer Keiser; Franck Boralevi; Oliver Sokana; Michael Marks; Daniel Engelman; Lucia Romani; Andrew C Steer; Lorenz von Seidlein; Nicholas J White; Eli Harriss; Kasia Stepniewska; Georgina S Humphreys; Kalynn Kennon; Philippe J Guerin; Kevin C Kobylinski
Journal:  PLoS Negl Trop Dis       Date:  2021-03-17

6.  Ivermectin treatment in humans for reducing malaria transmission.

Authors:  Dziedzom K de Souza; Rebecca Thomas; John Bradley; Clemence Leyrat; Daniel A Boakye; Joseph Okebe
Journal:  Cochrane Database Syst Rev       Date:  2021-06-29

7.  The effect of cattle-administered ivermectin and fipronil on the mortality and fecundity of Anopheles arabiensis Patton.

Authors:  Takalani I Makhanthisa; Leo Braack; Heike Lutermann
Journal:  Parasit Vectors       Date:  2021-07-02       Impact factor: 3.876

Review 8.  Are current preventive chemotherapy strategies for controlling and eliminating neglected tropical diseases cost-effective?

Authors:  Hugo C Turner; Wilma A Stolk; Anthony W Solomon; Jonathan D King; Antonio Montresor; David H Molyneux; Jaspreet Toor
Journal:  BMJ Glob Health       Date:  2021-08

9.  Tools to accelerate falciparum malaria elimination in Cambodia: a meeting report.

Authors:  Dysoley Lek; James J Callery; Chea Nguon; Mark Debackere; Siv Sovannaroth; Rupam Tripura; Marius Wojnarski; Patrice Piola; Soy Ty Khean; Kylie Manion; Sokomar Nguon; Amber Kunkel; Lieven Vernaeve; Thomas J Peto; Emily Dantzer; Chan Davoeung; William Etienne; Arjen M Dondorp; Luciano Tuseo; Lorenz von Seidlein; Jean-Olivier Guintran
Journal:  Malar J       Date:  2020-04-15       Impact factor: 2.979

10.  Mass Drug Administration With High-Dose Ivermectin and Dihydroartemisinin-Piperaquine for Malaria Elimination in an Area of Low Transmission With High Coverage of Malaria Control Interventions: Protocol for the MASSIV Cluster Randomized Clinical Trial.

Authors:  Edgard Diniba Dabira; Harouna M Soumare; Steven W Lindsay; Bakary Conteh; Fatima Ceesay; John Bradley; Christian Kositz; Henk Broekhuizen; Balla Kandeh; Alexandra E Fehr; Claudia Nieto-Sanchez; Joan Muela Ribera; Koen Peeters Grietens; Menno Roderick Smit; Chris Drakeley; Teun Bousema; Jane Achan; Umberto D'Alessandro
Journal:  JMIR Res Protoc       Date:  2020-11-19
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